0000000000038312

AUTHOR

Alessandro Presentato

0000-0002-4794-0599

showing 44 related works from this author

Tellurite-dependent blackening of bacteria emerges from the dark ages

2019

Environmental contextAlthough tellurium is a relatively rare element in the earth’s crust, its concentration in some niches can be naturally high owing to unique geology. Tellurium, as the oxyanion, is toxic to prokaryotes, and although prokaryotes have evolved resistance to tellurium, no universal mechanism exists. We review the interaction of tellurite with prokaryotes with a focus on those unique strains that thrive in environments naturally rich in tellurium. AbstractThe timeline of tellurite prokaryotic biology and biochemistry is now over 50 years long. Its start was in the clinical microbiology arena up to the 1970s. The 1980s saw the cloning of tellurite resistance determinants whil…

biologytellurite transporttellurium nanoparticlesThe RenaissanceContext (language use)010501 environmental sciencesbiology.organism_classification01 natural sciencesTellurite transporttellurite resistanceClinical microbiologytellurite bioprocessingtellurite toxicityGeochemistry and PetrologyChemistry (miscellaneous)Evolutionary biologyEnvironmental ChemistryBacteria0105 earth and related environmental sciencesEnvironmental Chemistry
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Stability of biogenic metal(loid) nanomaterials related to the colloidal stabilization theory of chemical nanostructures

2018

In the last 15 years, the exploitation of biological systems (i.e. plants, bacteria, mycelial fungi, yeasts, and algae) to produce metal(loid) (Me)-based nanomaterials has been evaluated as eco-friendly and a cost-effective alternative to the chemical synthesis processes. Although the biological mechanisms of biogenic Me-nanomaterial (Bio-Me-nanomaterials) production are not yet completely elucidated, a key advantage of such bio-nanostructures over those chemically synthesized is related to their natural thermodynamic stability, with several studies ascribed to the presence of an organic layer surrounding these Bio-Me-nanostructures. Different macromolecules (e.g. proteins, peptides, lipids…

Metalloid02 engineering and technology010402 general chemistryPolysaccharide01 natural sciencesApplied Microbiology and BiotechnologyChemical synthesisNanomaterialsstericOrganic chemistryColloidsBiological metal nanomaterialcolloidal stabilityDLVO theoryMetalloidschemistry.chemical_classificationbiologyMetalChemistryGeneral Medicine021001 nanoscience & nanotechnologybiology.organism_classificationTerpenoidNanostructures0104 chemical sciencesMetalselectrosteric interactionColloidChemical stabilityMetalloid0210 nano-technologyelectrostaticBacteriaBiotechnologyMacromoleculeCritical Reviews in Biotechnology
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Cross-linked natural IntegroPectin films from citrus biowaste with intrinsic antimicrobial activity

2022

AbstractPectin recovered via hydrodynamic cavitation (IntegroPectin) from lemon and grapefruit agri-food waste intrinsically containing antimicrobial bioactive substances (flavonoids, phenolic acids, terpenes, and terpenoids) was used to generate innovative and eco-compatible films that efficiently inhibit the growth of Gram-negative pathogens. Extensive characterization of films confirmed the presence of these substances, which differently interact with the polysaccharide polymer (pectin), plasticizer (glycerol), surfactant (Tween 60), and cross-linker (Ca2+), conferring to these films a unique structure. Besides, IntegroPectin-based films constitute versatile systems for the sustained, co…

Polymers and PlasticsAntimicrobial filmsTerpenesControlled releasePolyphenolsSettore BIO/19 - Microbiologia GeneraleCitrus pectinPectin filmsSettore CHIM/02 - Chimica Fisica
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Genome Sequence of Rhodococcus sp. Strain BCP1, a Biodegrader of Alkanes and Chlorinated Compounds

2013

Rhodococcus sp. strain BCP1 (DSM 44980) co-metabolizes chlorinated compounds and mineralizes a broad range of alkanes being highly tolerant to these toxic chemicals. Here, we present the high-quality draft genome sequence of strain BCP1 consisting of 6,231,823 bp, with a G+C content of 70.4%, 5,902 protein-coding genes, and 58 RNAs genes. Rhodococcus genus comprises Gram-positive, non-sporulating, aerobic bacteria that are widely distributed in the environment (1). Rhodococcus sp. strain BCP1 (formerly: Rhodococcus aetherovorans strain BCP1, DSM 44980) was selected from an aerobic butane-utilizing consortium as the prevailing isolate able to co-metabolize chloroform, vinyl chloride and tric…

Whole genome sequencingRHODOCOCCUSRhodococcus genome sequencingStrain (chemistry)StereochemistryGENOME SEQUENCERNABiologyBiodegradationBIO/19 - MICROBIOLOGIA GENERALEGenomeCHLORINATED SOLVENTSMicrobiologynot availableN-ALKANESGeneticsProkaryotesMicrobial biodegradationMolecular BiologyGeneRhodococcus sp.Genome Announcements
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Identification of Resistance Genes and Response to Arsenic in Rhodococcus aetherivorans BCP1

2019

This is the accepted manuscript of the paper "Identification of Resistance Genes and Response to Arsenic in Rhodococcus aetherivorans BCP1", published as final paper in "Frontiers in Microbiology Volume 10, 07 May 2019, Pages 888 https://doi.org/10.3389/fmicb.2019.00888”. Arsenic (As) ranks among the priority metal(loid)s that are of public health concern. In the environment, arsenic is present in different forms, organic or inorganic, featured by various toxicity levels. Bacteria have developed different strategies to deal with this toxicity involving different resistance genetic determinants. Bacterial strains of Rhodococcus genus, and more in general Actinobacteria p…

Microbiology (medical)arsenic resistance geneThioredoxin reductaselcsh:QR1-502chemistry.chemical_elementMicrobiologylcsh:MicrobiologyNO03 medical and health scienceschemistry.chemical_compoundR. aetherivorans BCP1Gene clusterRhodococcusArsenic030304 developmental biologyArseniteOriginal Research0303 health sciencesbiology030306 microbiologyarsenate reductionarsenic resistance genesbiology.organism_classificationActinobacteriaArsenate reductaseBiochemistrychemistryarsenic resistance genes arsenate reduction Rhodococcus R. aetherivorans BCP1 ActinobacteriaThioredoxinEnergy sourceRhodococcusRhodococcuFrontiers in Microbiology
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Physical–chemical properties of biogenic selenium nanostructures produced by stenotrophomonas maltophilia SeITE02 and ochrobactrum sp. MPV1

2018

Stenotrophomonas maltophilia SeITE02 and Ochrobactrum sp. MPV1 were isolated from the rhizosphere soil of the selenium-hyperaccumulator legume Astragalus bisulcatus and waste material from a dumping site for roasted pyrites, respectively. Here, these bacterial strains were studied as cell factories to generate selenium-nanostructures (SeNS) under metabolically controlled growth conditions. Thus, a defined medium (DM) containing either glucose or pyruvate as carbon and energy source along with selenite (SeO23−) was tested to evaluate bacterial growth, oxyanion bioconversion and changes occurring in SeNS features with respect to those generated by these strains grown on rich media. Transmissi…

0301 basic medicineMicrobiology (medical)biogenic nanomaterialsOchrobactrum sp. MPV1030106 microbiologyPopulationlcsh:QR1-502NanorodBacterial growthSettore BIO/19 - Microbiologia GeneraleMicrobiologyFluorescence spectroscopylcsh:Microbiology03 medical and health sciencesSeleniumNanoparticleExtracellulareducationPhotoluminescenceOriginal Researcheducation.field_of_studyStrain (chemistry)ChemistryFluorescenceStenotrophomonas maltophilia SeITE02Chemically defined medium030104 developmental biologybiogenic nanomaterials selenium selenite nanoparticles nanorods Stenotrophomonas maltophilia SeITE02 Ochrobactrum sp. MPV1 photoluminescenceSeleniteBiophysicsnanoparticlesBiogenic nanomaterialEnergy sourcenanorods
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Processing of metals and metalloids by actinobacteria: Cell resistance mechanisms and synthesis of metal(loid)-based nanostructures

2020

Metal(loid)s have a dual biological role as micronutrients and stress agents. A few geochemical and natural processes can cause their release in the environment, although most metal-contaminated sites derive from anthropogenic activities. Actinobacteria include high GC bacteria that inhabit a wide range of terrestrial and aquatic ecological niches, where they play essential roles in recycling or transforming organic and inorganic substances. The metal(loid) tolerance and/or resistance of several members of this phylum rely on mechanisms such as biosorption and extracellular sequestration by siderophores and extracellular polymeric substances (EPS), bioaccumulation, biotransformation, and me…

biogenic nanoscale materials0301 basic medicineMicrobiology (medical)Siderophore010501 environmental sciencesSettore BIO/19 - Microbiologia Generale01 natural sciencesMicrobiologycomplex mixturesActinobacteria03 medical and health sciencesmetal resistance mechanismsBioremediationExtracellular polymeric substanceBiotransformationMetal stress responseVirologyBiogenic nanoscale materialBioprocesslcsh:QH301-705.5Settore CHIM/02 - Chimica Fisica0105 earth and related environmental sciencesbiologyChemistrybiology.organism_classificationActinobacteria030104 developmental biologylcsh:Biology (General)BioaccumulationEnvironmental chemistryMetal resistance mechanismbacteriaMetalloidMetal-based nanostructures
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Lipid Nanocarriers-Loaded Nanocomposite as a Suitable Platform to Release Antibacterial and Antioxidant Agents for Immediate Dental Implant Placement…

2021

Immediate implant placement is a single-stage restorative approach for missing teeth widely used to overcome the ridge remodeling process occurring after dental extractions. The success of this procedure relies on opportune osseointegration in the surrounding tissues. To support this process, a multifunctional nanocomposite, to be applied in the fresh post-extraction socket, was here designed, prepared, and characterized. This formulation consists of quercetin (QRC)-loaded nanostructured lipid carriers (NLCs) entrapped in a chitosan-based solid matrix containing ciprofloxacin (CPX). QRC-NLCs were prepared by homogenization followed by high-frequency sonication, and thereafter this dispersio…

ChitosanNanocompositeNanostructured lipid carriersPharmaceutical ScienceEx vivo permeationSettore BIO/19 - Microbiologia GeneraleArticleAntibiofilmRS1-441Membrane accumulationPharmacy and materia medicaCiprofloxacinSettore CHIM/09 - Farmaceutico Tecnologico Applicativonanocomposite; quercetin; ciprofloxacin; nanostructured lipid carriers; chitosan; antimicrobial; antioxidant; antibiofilm; ex vivo permeation; membrane accumulationAntimicrobialQuercetinAntioxidantPharmaceutics
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Biosynthesis of selenium-nanoparticles and -nanorods as a product of selenite bioconversion by the aerobic bacterium Rhodococcus aetherivorans BCP1

2018

The wide anthropogenic use of selenium compounds represents the major source of selenium pollution world- wide, causing environmental issues and health concerns. Microbe-based strategies for metal removal/recovery have received increasing interest thanks to the association of the microbial ability to detoxify toxic metal/ metalloid polluted environments with the production of nanomaterials. This study investigates the tolerance and the bioconversion of selenite (SeO32−) by the aerobically grown Actinomycete Rhodococcus aetherivorans BCP1 in association with its ability to produce selenium nanoparticles and nanorods (SeNPs and SeNRs). The BCP1 strain showed high tolerance towards SeO32− with…

0301 basic medicineBioconversionStatic Electricity030106 microbiologychemistry.chemical_elementBioengineeringSelenious AcidSettore BIO/19 - Microbiologia GeneraleSelenium pollutionSelenium03 medical and health sciencesMinimum inhibitory concentrationchemistry.chemical_compoundNanoparticleBiosynthesisRhodococcusParticle SizeSelenite Rhodococcus aetherivorans Selenium nanoparticles Selenium nanorods Biogenic nanostructuresSelenium nanorodMolecular BiologyNanotubesbiologyBiogenic nanostructureRhodococcus aetherivoranSpectrometry X-Ray EmissionGeneral Medicinebiology.organism_classificationDynamic Light ScatteringSelenium nanoparticleBacteria AerobicNanotube030104 developmental biologychemistryBiochemistry13. Climate actionSelenious AcidSeleniteNanoparticlesMetalloidRhodococcusSeleniumRhodococcuBiotechnologyNew Biotechnology
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Towards a new treatment against polymicrobial infections: high antibacterial activity of lemon IntegroPectin against Pseudomonas aeruginosa and Esche…

2020

AbstractLemon IntegroPectin obtained via hydrodynamic cavitation of waste lemon peel in water only shows high antibacterial activity against two Gram-negative bacteria, Pseudomonas aeruginosa and Escherichia coli. The antibacterial effect against the ubiquitous pathogen P. aeruginosa was evaluated in terms of the minimal bactericidal (MBC) and minimal inhibitory concentration (MIC). Preliminary insight on the antibacterial mechanism of IntegroPectin originates from investigating its inhibitory activity against E. coli. Given the non-cytotoxic nature of citrus IntegroPectin and the ease of its reproducible production in large amounts, the route is open to the industrial development of a new …

biologyPseudomonas aeruginosaChemistryDrug resistancemedicine.disease_causeAntimicrobialbiology.organism_classificationMicrobiologyMinimum inhibitory concentrationmedicineAntibacterial activityEscherichia coliPathogenBacteria
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Neuroprotective and Mitoprotective Effects of Lemon IntegroPectin on SH-SY5Y Cells

2021

AbstractLemon IntegroPectin obtained via hydrodynamic cavitation of organic lemon processing waste in water shows significant neuroprotective activity in vitro, as first reported in this study investigating the effects of both lemon IntegroPectin and commercial citrus pectin on cell viability, cell morphology, reactive oxygen species (ROS) production and mitochondria perturbation induced by treatment of neuronal SH-SY5Y human cells with H2O2. Mediated by ROS including H2O2 and its derivatives, oxidative stress alters numerous cellular processes, including mitochondrial regulation and cell signaling, propagating cellular injury that leads to incurable neurodegenerative diseases. These result…

chemistry.chemical_classificationReactive oxygen speciesCell signalingSH-SY5YchemistrymedicineViability assayMitochondrionmedicine.disease_causeCell morphologyNeuroprotectionOxidative stressCell biology
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On the ability of perfluorohexane sulfonate (PFHxS) bioaccumulation by two Pseudomonas sp. strains isolated from PFAS‐contaminated environmental matr…

2020

PFASs (perfluoroalkyl and polyfluoroalkyl substances) are highly fluorinated, aliphatic, synthetic compounds with high thermal and chemical stability as well as unique amphiphilic properties which make them ingredients in a range of industrial processes. PFASs have attracted consideration due to their persistence, toxicity and bioaccumulation tendency in the environment. Recently, attention has begun to be addressed to shorter-chain PFASs, such as perfluorohexane sulfonate [PFHxS], apparently less toxic to and more easily eliminated from lab animals. However, short-chain PFASs represent end-products from the transformation of fluorotelomers whose biotic breakdown reactions have not been ide…

0301 basic medicineMicrobiology (medical)short-chain pfassMicroorganism010501 environmental sciences01 natural sciencesMicrobiologyPseudomonas spXenobiotics03 medical and health scienceschemistry.chemical_compoundBioremediationPFASsVirologyAxeniclcsh:QH301-705.5Perfluorohexane0105 earth and related environmental sciencesPollutantbiology<i>pseudomonas</i> sp.Contaminationbiology.organism_classificationBioaccumulation030104 developmental biologyPFHxSchemistrylcsh:Biology (General)Environmental chemistryBioaccumulationEmergent pollutantsXenobioticBioremediationShort‐chain PFASs
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Antimicrobial activity of biogenically produced spherical Se-nanomaterials embedded in organic material against Pseudomonas aeruginosa and Staphyloco…

2017

In an effort to prevent the formation of pathogenic biofilms on hydroxyapatite (HA)-based clinical devices and surfaces, we present a study evaluating the antimicrobial efficacy of Spherical biogenic Se-Nanostructures Embedded in Organic material (Bio Se-NEMO-S) produced by Bacillus mycoides SelTE01 in comparison with two different chemical selenium nanoparticle (SeNP) classes. These nanomaterials have been studied as potential antimicrobials for eradication of established HA-grown biofilms, for preventing biofilm formation on HA-coated surfaces and for inhibition of planktonic cell growth of Pseudomonas aeruginosa NCTC 12934 and Staphylococcus aureus ATCC 25923. Bio Se-NEMO resulted more e…

Anti-Infective Agent0301 basic medicineStaphylococcus aureusMetal Nanoparticleschemistry.chemical_elementBacillusBiocompatible MaterialsBioengineeringBacillus02 engineering and technologymedicine.disease_causeApplied Microbiology and BiotechnologyBiochemistrybiofilmantimicrobialsNanomaterialsMicrobiologyHydroxyapatiteSelenium03 medical and health sciencesAnti-Infective AgentsBiogenic Selenium nanoparticles (SeNPs) Hydroxyapatite Bacillus biofilm antimicrobials green synthesisOrganometallic CompoundsEnvironmental MicrobiologymedicineResearch ArticlesBiocompatible MaterialOrganometallic CompoundbiologyPseudomonas aeruginosagreen synthesisBiofilmBacillus mycoides021001 nanoscience & nanotechnologybiology.organism_classificationAntimicrobialBacilluDurapatite030104 developmental biologychemistryStaphylococcus aureusBiofilmsPseudomonas aeruginosaStaphylococcus aureu0210 nano-technologySeleniumResearch ArticleBiotechnologyBiogenic Selenium nanoparticles (SeNPs)
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Tolerance, Adaptation, and Cell Response Elicited by Micromonospora sp. Facing Tellurite Toxicity: A Biological and Physical-Chemical Characterization

2022

The intense use of tellurium (Te) in industrial applications, along with the improper disposal of Te-derivatives, is causing their accumulation in the environment, where oxyanion tellurite (TeO32&minus;) is the most soluble, bioavailable, and toxic Te-species. On the other hand, tellurium is a rare metalloid element whose natural supply will end shortly with possible economic and technological effects. Thus, Te-containing waste represents the source from which Te should be recycled and recovered. Among the explored strategies, the microbial TeO32&minus; biotransformation into less toxic Te-species is the most appropriate concerning the circular economy. Actinomycetes are ideal candidates in…

multivariate statistical analysisExtracellular Polymeric Substance MatrixSuperoxide DismutaseOrganic ChemistryGeneral MedicineSettore BIO/19 - Microbiologia Generalefatty acidsMicromonosporaCatalysisComputer Science ApplicationsInorganic ChemistryFTIR spectroscopyProtein Aggregatestellurite; bacterial cell membrane; cell morphology changes; fatty acids; FTIR spectroscopy; oxidative stress; heavy metals; multivariate statistical analysisbacterial cell membranecell morphology changesoxidative stressPhysical and Theoretical ChemistryTelluriumheavy metalstelluriteMolecular BiologySpectroscopy
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New neuroprotective effect of lemon integropectin on neuronal cellular model

2021

Lemon IntegroPectin obtained via hydrodynamic cavitation of organic lemon processing waste in water shows significant neuroprotective activity in vitro, as first reported in this study investigating the effects of both lemon IntegroPectin and commercial citrus pectin on cell viability, cell morphology, reactive oxygen species (ROS) production, and mitochondria perturbation induced by treatment of neuronal SH-SY5Y human cells with H2O2. Mediated by ROS, including H2O2 and its derivatives, oxidative stress alters numerous cellular processes, such as mitochondrial regulation and cell signaling, propagating cellular injury that leads to incurable neurodegenerative diseases. These results, and t…

Cell signalingantioxidantPhysiologyhesperidin;Antioxidant Flavonoids Hesperidin Mitochondria Neu-roprotective Neurological disease Oxidative stress PectinClinical BiochemistryRM1-950antioxidant;MitochondrionCell morphologymedicine.disease_causeBiochemistryNeuroprotectionArticleflavonoids;03 medical and health sciences0302 clinical medicinehesperidinmedicineoxidative stressViability assayneurological diseaseMolecular Biology030304 developmental biologychemistry.chemical_classificationpectinoxidative stress;neuroprotective;0303 health sciencesReactive oxygen speciespectin;neuroprotectiveCell BiologyCell biologymitochondriachemistryneurological disease;flavonoidsTherapeutics. PharmacologyCellular model030217 neurology & neurosurgeryOxidative stress
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New biocides based on imidazolinium-functionalised hybrid mesoporous silica nanoparticles

2022

Here, we report the development of a new biocide based on hybrid mesoporous silica nanoparticles (MSN). The MSN was synthesized by condensation method in emulsion followed by grafting with two different silylated ionic liquid moieties, namely butyl imidazolinium bromide and imidazolinium propansulfonate betaine. Features of nanoparticles were characterized by Thermogravimetry, Infrared and ss-NMR Spectroscopy, and Transmission Electron Microscopy. The antibacterial properties were tested against a Gram-positive bacterial strain previously isolated from artefacts of interest in the field of Cultural Heritage. Interestingly, the hybrid material presents an antibacterial activity higher than i…

Biocides Mesoporous silica nanoparticles Ionic liquids Biodeterioration Stone conservation Preventive conservationMechanics of MaterialsGeneral Materials ScienceGeneral ChemistryCondensed Matter Physics
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Selenium and tellurium nanomaterials

2018

Abstract Over the last 40 years, the rapid and exponential growth of nanotechnology led to the development of various synthesis methodologies to generate nanomaterials different in size, shape and composition to be applied in various fields. In particular, nanostructures composed of Selenium (Se) or Tellurium (Te) have attracted increasing interest, due to their intermediate nature between metallic and non-metallic elements, being defined as metalloids. Indeed, this key shared feature of Se and Te allows us the use of their compounds in a variety of applications fields, such as for manufacturing photocells, photographic exposure meters, piezoelectric devices, and thermoelectric materials, t…

NanowireGeneral Physics and AstronomyNanoparticlechemistry.chemical_elementNanotechnology02 engineering and technology010402 general chemistry01 natural sciencesChemical synthesisNanomaterialstelluriumGeneral Materials SciencePhysical synthesisseleniumnanomaterialsGeneral Chemistry021001 nanoscience & nanotechnology0104 chemical scienceschemistrynanowiresphysical synthesisNanorodnanoparticles0210 nano-technologyTelluriumnanorodsselenium tellurium nanomaterials chemical synthesis physical synthesis nanoparticles nanorods nanowiresSeleniumchemical synthesis
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Pectin: A Long-Neglected Broad-Spectrum Antibacterial.

2020

First reported in the late 1930s and first partly explained in 1970, the antibacterial activity of pectin remained almost ignored until the late 1990s. The concomitant emergence of research on natural antibacterials and on new usages of pectin polysaccharides, including those in medicine widely researched in Russia, has led to a renaissance of research in the physiological properties of this uniquely versatile polysaccharide ubiquitous in plants and fruits. Collecting scattered information, this study provides an updated overview on the subtle factors affecting the behaviour of pectin as antimicrobial. Less degraded pectin extracted via acid-free routes, we argue in the conclusions, will so…

Polymicrobial infection2019-20 coronavirus outbreakfood.ingredientPectinSevere acute respiratory syndrome coronavirus 2 (SARS-CoV-2)Biocompatible MaterialsMicrobial Sensitivity TestsBiology01 natural sciencesBiochemistrypectin polysaccharidesBroad spectrumfoodDrug DiscoveryCitrus PectinFood scienceGeneral Pharmacology Toxicology and PharmaceuticsPharmacologypectinBacteria010405 organic chemistryOrganic ChemistryThe Renaissancefood and beveragesAntimicrobialcitrus pectin0104 chemical sciencesantibacterial agents antimicrobial agents polysaccharides pectin citrus pectinAnti-Bacterial Agents010404 medicinal & biomolecular chemistryantibacterialMolecular MedicineantimicrobialPectinsChemMedChem
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Biotechnology of Rhodococcus for the production of valuable compounds

2020

Abstract Bacteria belonging to Rhodococcus genus represent ideal candidates for microbial biotechnology applications because of their metabolic versatility, ability to degrade a wide range of organic compounds, and resistance to various stress conditions, such as metal toxicity, desiccation, and high concentration of organic solvents. Rhodococcus spp. strains have also peculiar biosynthetic activities that contribute to their strong persistence in harsh and contaminated environments and provide them a competitive advantage over other microorganisms. This review is focused on the metabolic features of Rhodococcus genus and their potential use in biotechnology strategies for the production o…

BioconversionSiderophoreBioflocculantsBioconversionMicroorganismBiosynthesiIndustrial WasteSiderophoresBiosynthesisApplied Microbiology and BiotechnologyRhodococcus Antimicrobials Bioflocculants Biosynthesis Bioconversion Biosurfactants Carotenoids Lipids Metal-based nanostructures SiderophoresBioproductsRhodococcusTriglyceridesCarotenoidHigh concentrationbiologyAntimicrobialsChemistrybusiness.industryMetal-based nanostructureBiosurfactantBioflocculantGeneral MedicineMini-ReviewLipidbiology.organism_classificationCarotenoidsLipidsRefuse DisposalBiotechnologyBiosurfactantsbacteriaAntimicrobialbusinessRhodococcusMetal-based nanostructuresBacteriaRhodococcuBiotechnologyWaste disposalApplied Microbiology and Biotechnology
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Growth of Rhodococcus sp. strain BCP1 on gaseous n-alkanes: New metabolic insights and transcriptional analysis of two soluble di-iron monooxygenase …

2015

none 7 si Rhodococcus sp. strain BCP1 was initially isolated for its ability to grow on gaseous n-alkanes, which act as inducers for the co-metabolic degradation of low-chlorinated compounds. Here, both molecular and metabolic features of BCP1 cells grown on gaseous and short-chain n-alkanes (up to n-heptane) were examined in detail. We show that propane metabolism generated terminal and sub-terminal oxidation products such as 1- and 2-propanol, whereas 1-butanol was the only terminal oxidation product detected from n-butane metabolism. Two gene clusters, prmABCD and smoABCD—coding for Soluble Di-Iron Monooxgenases (SDIMOs) involved in gaseous n-alkanes oxidation—were detected in the BCP1 g…

Microbiology (medical)Gaseous n-alkaneSoluble di-iron monooxygenaseStrain (chemistry)lcsh:QR1-502Monooxygenase gene expressionMetabolismgaseous n-alkanesMonooxygenaseBiologyLyaseRedoxMicrobiologyPrimer extensionlcsh:MicrobiologyChaperoninRhodococcus sp strain BCP1; soluble di-iron monooxygenase; propane and n-butane oxidation; gaseous n-alkanes; monooxygenase gene expressionBiochemistryRhodococcus sp. strain BCP1Rhodococcus sp strain BCP1Propane and n-butane oxidationGeneOriginal Researchpropane and butane oxidation
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A combined physical-chemical and microbiological approach to unveil the fabrication, provenance, and state of conservation of the Kinkarakawa-gami ar…

2020

AbstractKinkarakawa-gami wallpapers are unique works of art produced in Japan between 1870 and 1905 and exported in European countries, although only few examples are nowadays present in Europe. So far, neither the wallpapers nor the composing materials have been characterised, limiting the effective conservation–restoration of these artefacts accounting also for the potential deteriogen effects of microorganisms populating them. In the present study, four Kinkarakawa-gami wallpapers were analysed combining physical–chemical and microbiological approaches to obtain information regarding the artefacts’ manufacture, composition, dating, and their microbial community. The validity of these met…

0301 basic medicineProvenanceScienceXRFSettore BIO/19 - Microbiologia Generale01 natural sciencesfluorescence microscopyMicrobiologyArticle03 medical and health sciencesPhysical chemicalStatistical analysisSettore CHIM/02 - Chimica FisicaMultidisciplinaryQ010401 analytical chemistryRLimitingleather-like wallpapercultural heritageMaterials science0104 chemical sciences030104 developmental biologyGeographyFTIRbiodeteriogenMedicineIdentification (biology)Biochemical engineeringScientific reports
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A Comparative Analysis of Aquatic and Polyethylene-Associated Antibiotic-Resistant Microbiota in the Mediterranean Sea

2021

Simple Summary In recent years, a growing interest has been devoted to the bacterial characterization of marine plastic debris. So far, a few publications have explored the composition of microbial communities on polyethylene (PE) waste items and the occurrence of antibiotic-resistant bacteria (ARB). The occurrence of ARB in natural matrices can contribute to the spread of antibiotic resistance genes (ARGs) among environmental bacteria. In this study, we compared the microbial composition and the presence of ARGs in water and PE fragments collected from a stream and the seawater in a coastal area of Northwestern Sicily. Our findings showed more ARGs on PE fragments than the corresponding wa…

0301 basic medicineAquatic environments030106 microbiologyPlastisphereBiologyIntegronArticleResistomeGeneral Biochemistry Genetics and Molecular BiologyIntegron03 medical and health sciencesAntibiotic resistanceMediterranean seaAntibiotic resistance genesFood scienceMicrobiomelcsh:QH301-705.5General Immunology and MicrobiologyAquatic ecosystemPlastisphereResistome030104 developmental biologylcsh:Biology (General)Antibiotic resistant bacteriaPolyethylenebiology.proteinSeawaterMicrobiomeGeneral Agricultural and Biological SciencesBiology
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Aerobic growth of Rhodococcus aetherivorans BCP1 using selected naphthenic acids as the sole carbon and energy sources

2018

Naphthenic acids (NAs) are an important group of toxic organic compounds naturally occurring in hydrocarbon deposits. This work shows that Rhodococcus aetherivorans BCP1 cells not only utilize a mixture of eight different NAs (8XNAs) for growth but they are also capable of marked degradation of two model NAs, cyclohexanecarboxylic acid (CHCA) and cyclopentanecarboxylic acid (CPCA) when supplied at concentrations from 50 to 500 mgL&minus;1 . The growth curves of BCP1 on 8XNAs, CHCA, and CPCA showed an initial lag phase not present in growth on glucose, which presumably was related to the toxic effects of NAs on the cell membrane permeability. BCP1 cell adaptation responses that allowed survi…

0301 basic medicineMicrobiology (medical)Inclusion bodie030106 microbiologylcsh:QR1-502Settore BIO/19 - Microbiologia Generale7. Clean energyMicrobiologylcsh:Microbiology03 medical and health scienceschemistry.chemical_compoundBiosynthesisRhodococcus aetherivorans naphthenic acids stress response b-oxidation transmission electron microscopy fatty acids methyl esters inclusion bodiesnaphthenic acidsBeta oxidationchemistry.chemical_classificationbiologyStress responseRhodococcus aetherivoranNaphthenic acidCyclohexanecarboxylic acidbiology.organism_classificationRhodococcus aetherivoranschemistryBiochemistryFatty acids methyl esterβ-oxidationfatty acids methyl estersEnergy sourceRhodococcusBacteriaIntracellularTransmission electron microscopyPolyunsaturated fatty acid
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Conservation state of two paintings in the Santa Margherita cliff cave: role of the environment and of the microbial community

2021

Abstract The conservation of ancient paintings sited in humid environments is an actual challenge for restorers, because it needs the knowledge of the materials the paintings are made up and of their interaction with a peculiar surrounding environment; thus, tailored procedures and strategies aimed at restoring and preserving paintings are necessary. The Santa Margherita’s cave in Castellammare del Golfo (Trapani, Italy) is a natural cave, containing the remains of paintings, in a poor state of conservation, belonging to an ancient church dated back to the Middle Age. The present manuscript reports the monitoring of environmental conditions (i.e., temperature and humidity) in a full year as…

Health Toxicology and Mutagenesismedia_common.quotation_subjectNatural (archaeology)Cave paintingCave paintingState (polity)CaveCliffEnvironmental ChemistrySulfates and chloridesmedia_commongeographyPaintinggeography.geographical_feature_categoryBacteriaMicrobiotaTemperatureConservation PlanPlan (archaeology)HumidityEnvironmental monitoringGeneral MedicinePollutionArchaeologyhumanitiesConservation planPaintingsBacterial community
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Formulation of Mesoporous Silica Nanoparticles for Controlled Release of Antimicrobials for Stone Preventive Conservation

2020

The biotic deterioration of artifacts of archaeological and artistic interest mostly relies on the action of microorganisms capable of thriving under the most disparate environmental conditions. Thus, to attenuate biodeterioration phenomena, biocides can be used by the restorers to prevent or slow down the microbial growth. However, several factors such as biocide half-life, its wash-out because of environmental conditions, and its limited time of action make necessary its application repeatedly, leading to negative economic implications. Sound and successful treatments are represented by controlled release systems (CRSs) based on porous materials. Here, we report on the design and developm…

Biocidecondensation in emulsionNanoparticle02 engineering and technologyBacterial growth010402 general chemistrySettore BIO/19 - Microbiologia Generale01 natural sciencesKocuria rhizophilabiocideslcsh:Chemistrystone conservationSpecific surface areabiodeteriorationmesoporous silica nanoparticlesOriginal ResearchSettore CHIM/02 - Chimica Fisicacontrolled release systemsbiologyChemistryGeneral Chemistrycultural heritageMesoporous silica021001 nanoscience & nanotechnologybiology.organism_classificationControlled release0104 chemical sciencesChemistryChemical engineeringbiocides biodeterioration condensation in emulsion controlled release systems cultural heritage mesoporous silica nanoparticles stone conservationlcsh:QD1-999Emulsion0210 nano-technologyFrontiers in Chemistry
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Assembly, growth and conductive properties of tellurium nanorods produced by Rhodococcus aetherivorans BCP1

2018

AbstractTellurite (TeO32−) is a hazardous and toxic oxyanion for living organisms. However, several microorganisms can bioconvert TeO32− into the less toxic form of elemental tellurium (Te0). Here, Rhodococcus aetherivorans BCP1 resting (non-growing) cells showed the proficiency to produce tellurium-based nanoparticles (NPs) and nanorods (NRs) through the bioconversion of TeO32−, depending on the oxyanion initial concentration and time of cellular incubation. Te-nanostructures initially appeared in the cytoplasm of BCP1 cells as spherical NPs, which, as the exposure time increased, were converted into NRs. This observation suggested the existence of an intracellular mechanism of TeNRs assem…

0301 basic medicineBioconversionchemistry.chemical_elementNanoparticlelcsh:MedicineOxyanion02 engineering and technologySettore BIO/19 - Microbiologia GeneraleArticleNanomaterialsSurface-Active Agent03 medical and health scienceschemistry.chemical_compoundSurface-Active AgentsRhodococcuslcsh:ScienceMultidisciplinaryNanotubesbiologyChemistrylcsh:RElectric Conductivitynanoparticles Rhodococcus aetherivorans tellurite resting cells021001 nanoscience & nanotechnologybiology.organism_classificationNanotube030104 developmental biologyChemical engineeringChemical stabilityNanorodlcsh:QTellurium0210 nano-technologyTelluriumRhodococcusRhodococcuScientific Reports
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New Synthetic Nitro-Pyrrolomycins as Promising Antibacterial and Anticancer Agents

2020

: Pyrrolomycins (PMs) are polyhalogenated antibiotics known as powerful biologically active compounds, yet featuring high cytotoxicity. The present study reports the antibacterial and antitumoral properties of new chemically synthesized PMs, where the three positions of the pyrrolic nucleus were replaced by nitro groups, aiming to reduce their cytotoxicity while maintaining or even enhancing the biological activity. Indeed, the presence of the nitro substituent in diverse positions of the pyrrole determined an improvement of the minimal bactericidal concentration (MBC) against Gram-positive (i.e., Staphylococcus aureus) or -negative (i.e., Pseudomonas aeruginosa) pathogen strains as compare…

0301 basic medicineMicrobiology (medical)Staphylococcus aureusmedicine.drug_classAntibioticspyrrolomycinmedicine.disease_causeSettore BIO/19 - Microbiologia Generale01 natural sciencesBiochemistryMicrobiologypyrrolic nucleusHCT116Article03 medical and health sciencesantibacterial activityMCF 7medicinePharmacology (medical)General Pharmacology Toxicology and PharmaceuticsSettore BIO/06 - Anatomia Comparata E CitologiaCytotoxicityheterocyclesMinimum bactericidal concentrationantitumoral activity010405 organic chemistryChemistryPseudomonas aeruginosalcsh:RM1-950MCF7Biological activitySettore CHIM/08 - Chimica Farmaceutica0104 chemical scienceslcsh:Therapeutics. Pharmacology030104 developmental biologyInfectious DiseasesMCF-7BiochemistryStaphylococcus aureusPseudomonas aeruginosaNitroAntibiotics
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Graphene Oxide Carboxymethylcellulose Nanocomposite for Dressing Materials.

2020

Sore, infected wounds are a major clinical issue, and there is thus an urgent need for novel biomaterials as multifunctional constituents for dressings. A set of biocomposites was prepared by solvent casting using different concentrations of carboxymethylcellulose (CMC) and exfoliated graphene oxide (Exf-GO) as a filler. Exf-GO was first obtained by the strong oxidation and exfoliation of graphite. The structural, morphological and mechanical properties of the composites (CMCx/Exf-GO) were evaluated, and the obtained composites were homogenous, transparent and brownish in color. The results confirmed that Exf-GO may be homogeneously dispersed in CMC. It was found that the composite has an i…

Materials scienceComposite numberOxide02 engineering and technology010402 general chemistry01 natural scienceslcsh:TechnologyArticlelaw.inventionmedical deviceschemistry.chemical_compoundbiocompatibilitylawGeneral Materials ScienceGraphitelcsh:Microscopygraphene oxide nanocompositeSettore CHIM/02 - Chimica Fisicalcsh:QC120-168.85carboxymethyl celluloseNanocompositelcsh:QH201-278.5Graphenelcsh:T021001 nanoscience & nanotechnologyCastingExfoliation joint0104 chemical sciencesSolventSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryChemical engineeringlcsh:TA1-2040lcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologylcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials (Basel, Switzerland)
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Genome and phenotype microarray analyses of rhodococcus sp. BCP1 and rhodococcus opacus R7: Genetic determinants and metabolic abilities with environ…

2015

In this paper comparative genome and phenotype microarray analyses of Rhodococcus sp. BCP1 and Rhodococcus opacus R7 were performed. Rhodococcus sp. BCP1 was selected for its ability to grow on short-chain n-alkanes and R. opacus R7 was isolated for its ability to grow on naphthalene and on o-xylene. Results of genome comparison, includ- ing BCP1, R7, along with other Rhodococcus reference strains, showed that at least 30% of the genome of each strain presented unique sequences and only 50% of the predicted proteome was shared. To associate genomic features with metabolic capabilities of BCP1 and R7 strains, hundreds of different growth conditions were tested through Phenotype Microarray, b…

AROMATIC-COMPOUNDS; GENUS RHODOCOCCUS; HIGH-THROUGHPUT; PATHWAY; DEGRADATION; BIODEGRADATION; EQUI; PERFORMANCE; CATABOLISMGenomics RhodococcusGene predictionBacterial Proteinlcsh:MedicineBiologyGenomeXenobioticsRhodococcus opacusBacterial ProteinsRhodococcuslcsh:ScienceGenePhylogenyGeneticsComparative genomicsMultidisciplinarylcsh:RMetabolic Networks and PathwayPhenotype microarrayHigh-Throughput Nucleotide SequencingRhodococcus sp. BCP1 Rhodococcus opacus R7Genome analysisGene Expression Regulation BacterialGenomicsSequence Analysis DNAbiology.organism_classificationBIO/19 - MICROBIOLOGIA GENERALEBiodegradation EnvironmentalPhenotypeProteomeGenomiclcsh:QPhenotype MicroarrayRhodococcusMetabolic Networks and PathwaysRhodococcuhydrocarbon degradationResearch Article
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Untargeted Metabolomics Investigation on Selenite Reduction to Elemental Selenium by Bacillus mycoides SeITE01

2021

Bacillus mycoides SeITE01 is an environmental isolate that transforms the oxyanion selenite (SeO32−) into the less bioavailable elemental selenium (Se0) forming biogenic selenium nanoparticles (Bio-SeNPs). In the present study, the reduction of sodium selenite (Na2SeO3) by SeITE01 strain and the effect of SeO32− exposure on the bacterial cells was examined through untargeted metabolomics. A time-course approach was used to monitor both cell pellet and cell free spent medium (referred as intracellular and extracellular, respectively) metabolites in SeITE01 cells treated or not with SeO32−. The results show substantial biochemical changes in SeITE01 cells when exposed to SeO32−. The initial u…

Microbiology (medical)Cell signalingMembrane lipidsBacillus mycoides SeITE01 selenite selenium nanoparticles signaling molecules time course untargeted metabolomicschemistry.chemical_elementSettore BIO/19 - Microbiologia GeneraleMicrobiologychemistry.chemical_compoundselenium nanoparticlesExtracellularBacillus mycoides SeITE01time courseSettore CHIM/02 - Chimica Fisicachemistry.chemical_classificationbiologyGlutathioneBacillus mycoidesbiology.organism_classificationQR1-502Amino aciduntargeted metabolomicschemistryBiochemistrysignaling moleculesseleniteSeleniumIntracellular
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A New Water-Soluble Bactericidal Agent for the Treatment of Infections Caused by Gram-Positive and Gram-Negative Bacterial Strains

2020

Grapefruit and lemon pectin obtained from the respective waste citrus peels via hydrodynamic cavitation in water only are powerful, broad-scope antimicrobials against Gram-negative and -positive bacteria. Dubbed IntegroPectin, these pectic polymers functionalized with citrus flavonoids and terpenes show superior antimicrobial activity when compared to commercial citrus pectin. Similar to commercial pectin, lemon IntegroPectin determined ca. 3-log reduction in Staphylococcus aureus cells, while an enhanced activity of commercial citrus pectin was detected in the case of Pseudomonas aeruginosa cells with a minimal bactericidal concentration (MBC) of 15 mg mL&minus

0301 basic medicineMicrobiology (medical)Staphylococcus aureusfood.ingredientPectinlemon030106 microbiology<i>Staphylococcus aureus</i>grapefruitmedicine.disease_causeBiochemistryMicrobiologyArticle03 medical and health sciencesAntibiotic resistancefoodmedicineflavonoidPharmacology (medical)Citrus PectinFood scienceantimicrobial resistanceGeneral Pharmacology Toxicology and PharmaceuticspolyphenolsIntegroPectinMinimum bactericidal concentrationbiologyChemistryPseudomonas aeruginosalcsh:RM1-950food and beveragesAntimicrobialbiology.organism_classificationcitrus pectincarbohydrates (lipids)<i>Pseudomonas aeruginosa</i>polyphenollcsh:Therapeutics. Pharmacology030104 developmental biologyInfectious DiseasesStaphylococcus aureusflavonoidscitrus terpenesPseudomonas aeruginosaStaphylococcus aureucitrus terpeneBacteriaAntibiotics
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Volatile Compounds of Lemon and Grapefruit IntegroPectin

2020

An HS-SPME GC-MS analysis of the volatile compounds adsorbed at the outer surface of lemon and grapefruit pectins obtained via the hydrodynamic cavitation of industrial waste streams of lemon and grapefruit peels in water suggests important new findings en route to understanding the powerful and broad biological activity of these new pectic materials. In agreement with the ultralow degree of esterification of these pectins, the high amount of highly bioactive &alpha

Citrusfood.ingredientPectinlemonPhytochemicalsPharmaceutical SciencegrapefruitArticleIndustrial wasteGas Chromatography-Mass SpectrometryAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compoundAdsorptionfoodLinaloolCitrus paradisilcsh:Organic chemistryDrug Discoveryhydrodynamic cavitation?-terpineolFood sciencePhysical and Theoretical ChemistryIntegroPectinpectinResidue (complex analysis)LimoneneVolatile Organic CompoundsMolecular Structureapplied_chemistryOrganic Chemistrycircular economywaste citrus peelBiosynthetic PathwaysTerpineolchemistryChemistry (miscellaneous)FruitMolecular Medicineα-terpineolGas chromatography–mass spectrometryCitric acidCitrus paradisi
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Superior Antibacterial Activity of Integral Lemon Pectin Extracted via Hydrodynamic Cavitation

2020

Abstract Pectin extracted via hydrodynamic cavitation in water only from waste lemon peel and further isolated via freeze drying displays significant antibacterial activity against Staphylococcus aureus, a Gram positive pathogen which easily contaminates food. The antibacterial effect of the new IntegroPectin is largely superior to that of commercial citrus pectin, opening the way to advanced applications of a new bioproduct now obtainable in large amounts and at low cost from citrus juice industry's waste.

CitrusStaphylococcus aureusfood.ingredientPectinAntibacterial effectCITRUS JUICE010402 general chemistrymedicine.disease_cause01 natural scienceslcsh:Chemistrycitrus flavonoidsFreeze-dryingfoodhydrodynamic cavitationmedicineHumansCitrus PectinFood scienceIntegroPectinpectinWaste ProductsLemon peel010405 organic chemistryChemistryPlant ExtractsCommunicationfood and beveragesGeneral ChemistryCommunications0104 chemical sciencesAnti-Bacterial AgentsFruit and Vegetable Juicesantibacteriallcsh:QD1-999Staphylococcus aureusFruitHydrodynamicsPectinsAntibacterial activityChemistryOpen
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Antibacterial PEGylated Solid Lipid Microparticles for Cosmeceutical Purpose: Formulation, Characterization, and Efficacy Evaluation

2020

The development of efficacious means of delivering antioxidant polyphenols from natural sources for the treatment of skin diseases is of great interest for many cosmetic and pharmaceutical companies. Resveratrol (RSV) and Limonene (LIM) have been shown to possess good anti-inflammatory and antibacterial properties against Staphylococcus aureus infections responsible for many skin disorders, such as acne vulgaris. In this study, solid lipid microparticles are designed as composite vehicles capable of encapsulating a high amount of trans-RSV and enhancing its absorption through the stratum corneum. A microparticulate system based on mixture of PEGylate lipids, long-chain alcohols and LIM is a…

Antioxidanttape-strippingmedicine.medical_treatment02 engineering and technologyResveratrolLabrasolSettore BIO/19 - Microbiologia Generale01 natural scienceslcsh:Technologyporcine earchemistry.chemical_compoundlipid microsphereGeneral Materials ScienceAcnemedia_commonlcsh:QC120-168.851-Hexadecanol021001 nanoscience & nanotechnologyAntimicrobialmedicine.anatomical_structure0210 nano-technologyCosmeceuticallcsh:TK1-9971Drugmedia_common.quotation_subjectAbsorption (skin)Staphylococcus aureus ATCC 25923Articlelipid microspheresmedicineStratum corneumlcsh:Microscopyantimicrobial activityporcine earslcsh:QH201-278.5010405 organic chemistrylcsh:Tmedicine.diseaseCombinatorial chemistry0104 chemical scienceschemistry<i>Staphylococcus aureus</i> ATCC 25923lcsh:TA1-2040Settore CHIM/09 - Farmaceutico Tecnologico ApplicativoResveratrolsolid lipid microparticlelcsh:Descriptive and experimental mechanicssolid lipid microparticleslcsh:Electrical engineering. Electronics. Nuclear engineeringlcsh:Engineering (General). Civil engineering (General)LimoneneMaterials
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Flavonoids in Lemon and Grapefruit IntegroPectin

2021

Abstract Following the analysis of terpenes present in new lemon and grapefruit “IntegroPectin” pectins obtained via the hydrodynamic cavitation of industrial lemon and grapefruit processing waste, the HPLC‐MS analysis of flavonoid and other phenolic compounds reveals the presence of eriocitrin, naringin, hesperidin and kaempferol typical of the respective citrus fruits. The pectic fibers rich in rhamnogalacturonan‐I regions act as chemical sponges adsorbing and concentrating at their outer surface highly bioactive citrus flavonoids and terpenes. These findings, together with the unique molecular structure of these new whole citrus pectins, provide preliminary insight into the broad‐scope b…

Citrusfood.ingredientPectinFlavonoidcitrus fruitsTerpenepectinschemistry.chemical_compoundHesperidinfoodhydrodynamic cavitationFood scienceQD1-999NaringinIntegroPectinFlavonoidschemistry.chemical_classificationFull Paperfood and beveragesNeurodegenerative DiseasesGeneral ChemistryFull Papersfood_chemistryChemistrychemistryFruitEriocitrinKaempferolCitrus paradisi
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Biogenic Selenium Nanoparticles: A Fine Characterization to Unveil Their Thermodynamic Stability

2021

Among the plethora of available metal(loid) nanomaterials (NMs), those containing selenium are interesting from an applicative perspective, due to their high biocompatibility. Microorganisms capable of coping with toxic Se-oxyanions generate mostly Se nanoparticles (SeNPs), representing an ideal and green alternative over the chemogenic synthesis to obtain thermodynamically stable NMs. However, their structural characterization, in terms of biomolecules and interactions stabilizing the biogenic colloidal solution, is still a black hole that impairs the exploitation of biogenic SeNP full potential. Here, spherical and thermodynamically stable SeNPs were produced by a metal(loid) tolerant Mic…

BiocompatibilityGeneral Chemical EngineeringNanoparticle02 engineering and technologyDFT calculationsArticleMicrococcusNanomaterials03 medical and health sciencesAdsorptionbiogenic selenium nanoparticlesMoleculeGeneral Materials ScienceFourier transform infrared spectroscopyQD1-999030304 developmental biologymultivariate statistical analysischemistry.chemical_classification0303 health sciencesBiomolecule021001 nanoscience & nanotechnologyChemistryFTIR spectroscopychemistryChemical engineering<i>Micrococcus</i>thermodynamic stabilityChemical stabilityselenium nanorods0210 nano-technologyNanomaterials
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Influence of bacterial physiology on processing of selenite, biogenesis of nanomaterials and their thermodynamic stability

2019

We explored how Ochrobactrum sp. MPV1 can convert up to 2.5 mM selenite within 120 h, surviving the challenge posed by high oxyanion concentrations. The data show that thiol-based biotic chemical reaction(s) occur upon bacterial exposure to low selenite concentrations, whereas enzymatic systems account for oxyanion removal when 2 mM oxyanion is exceeded. The selenite bioprocessing produces selenium nanomaterials, whose size and morphology depend on the bacterial physiology. Selenium nanoparticles were always produced by MPV1 cells, featuring an average diameter ranging between 90 and 140 nm, which we conclude constitutes the thermodynamic stability range for these nanostructures. Alternativ…

biogenic nanomaterials; selenium nanomaterials; selenite; selenium nanoparticles; selenium nanorods; Ochrobactrum; thermodynamic stability; electrosteric stabilizationPharmaceutical ScienceNanoparticlePhysiologyOxyanion02 engineering and technologySelenious AcidAnalytical ChemistryNanomaterialschemistry.chemical_compoundNanoparticleDrug Discoverychemistry.chemical_classification0303 health sciencesNanotubeselectrosteric stabilization021001 nanoscience & nanotechnologySelenium nanomaterialSelenium nanoparticleChemistry (miscellaneous)Molecular MedicineBiogenic nanomaterialNanorod0210 nano-technologybiogenic nanomaterialsselenium nanomaterialschemistry.chemical_elementOchrobactrumArticlelcsh:QD241-44103 medical and health scienceslcsh:Organic chemistryAmphiphileselenium nanoparticlesPhysical and Theoretical ChemistryParticle SizeSelenium nanorod030304 developmental biologyBiomoleculeOrganic ChemistryNanotube<i>Ochrobactrum</i>chemistry13. Climate actionNanoparticlesthermodynamic stabilityChemical stabilityseleniteselenium nanorodsSelenium
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Antifouling Systems Based on a Polyhedral Oligomeric Silsesquioxane-Based Hexyl Imidazolium Salt Adsorbed on Copper Nanoparticles Supported on Titania

2023

The reaction of octakis(3-chloropropyl)octasilsesquioxane with four equivalents of 1-hexylimidazole or 1-decylimidazole gave two products labelled as HQ-POSS (hexyl-imidazolium quaternized POSS) and DQ-POSS (decyl-imidazolium quaternized POSS) as regioisomer mixtures. An investigation of the biological activity of these two compounds revealed the higher antimicrobial performances of HQ-POSS against Gram-positive and Gram-negative microorganisms, proving its broad-spectrum activity. Due to its very viscous nature, HQ-POSS was adsorbed in variable amounts on the surface of biologically active oxides to gain advantages regarding the expendability of such formulations from an applicative perspe…

marine biofouling; polyhedral oligomeric silsesquioxane; imidazolium salt; copper nanoparticles; titaniaGeneral Chemical Engineeringpolyhedral oligomeric silsesquioxanecopper nanoparticlesmarine biofoulingGeneral Materials SciencetitaniaSettore CHIM/06 - Chimica OrganicaSettore BIO/19 - Microbiologia Generaleimidazolium salt
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Chemogenic versus biogenic synthesis of Selenium nanoparticles: a structural characterization

Among the plethora of available metal- and metalloid-based nanomaterials (NMs), selenium nanostructures (SeNSs) are one of the most interesting from an applicative perspective due to their intermediate properties between metals and non-metals, as well as their high biocompatibility. In this regard, the capability of microorganisms to biotransform toxic Se-oxyanions – i.e., selenite (SeO32-) and selenate (SeO42-) – into their less bioavailable elemental forms [Se(0)], mostly generating Se nanoparticles (SeNPs), represents as a useful and green alternative over chemogenic synthesis allowing to obtain highly thermodynamically stable NMs. However, their structural characterization, in terms of …

Selenium nanoparticles chemogenic synthesis biogenic synthesisSettore BIO/19 - Microbiologia GeneraleSettore CHIM/02 - Chimica Fisica
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Rhodococcus aetherivorans BCP1 as cell factory for the production of intracellular tellurium nanorods under aerobic conditions

2016

Tellurite (TeO3 2−) is recognized as a toxic oxyanion to living organisms. However, mainly anaerobic or facultative-anaerobic microorganisms are able to tolerate and convert TeO3 2− into the less toxic and available form of elemental Tellurium (Te0), producing Te-deposits or Te-nanostructures. The use of TeO3 2−-reducing bacteria can lead to the decontamination of polluted environments and the development of “green-synthesis” methods for the production of nanomaterials. In this study, the tolerance and the consumption of TeO3 2− have been investigated, along with the production and characterization of Te-nanorods by Rhodococcus aetherivorans BCP1 grown under aerobic conditions. Aerobically …

0301 basic medicineMicroorganism030106 microbiologyOxyanionBioengineeringSettore BIO/19 - Microbiologia GeneraleApplied Microbiology and Biotechnology03 medical and health scienceschemistry.chemical_compoundMinimum inhibitory concentrationBiogenic nanostructuresTelluriteRhodococcusFood scienceTellurium nanorodsSettore CHIM/02 - Chimica FisicaNanorods biosynthesisNanotubesbiologyStrain (chemistry)ResearchBiogenic nanostructureNanorods biosynthesiAerobiosiRhodococcus aetherivoranElemental telluriumTellurium nanorodbiology.organism_classificationAerobiosisNanotubeRhodococcus aetherivoranschemistryBiochemistryTelluriumAnaerobic exerciseRhodococcusBacteriaIntracellularRhodococcuBiotechnology
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Is Caretta Caretta a Carrier of Antibiotic Resistance in the Mediterranean Sea?

2020

Sea turtles can be considered a sentinel species for monitoring the health of marine ecosystems, acting, at the same time, as a carrier of microorganisms. Indeed, sea turtles can acquire the microbiota from their reproductive sites and feeding, contributing to the diffusion of antibiotic-resistant strains to uncontaminated environments. This study aims to unveil the presence of antibiotic-resistant bacteria in (i) loggerhead sea turtles stranded along the coast of Sicily (Mediterranean Sea), (ii) unhatched and/or hatched eggs, (iii) sand from the turtles&rsquo

0301 basic medicineMicrobiology (medical)antibiotic resistance030106 microbiologyZoologyheavy metal resistanceIntegronAntibiotic resistance Caretta caretta Mediterranean SeaBiochemistryMicrobiologyLoggerhead sea turtleArticleantimicrobials03 medical and health sciencesAntibiotic resistanceMediterranean seacaretta carettamedicineMediterranean SeaPharmacology (medical)Marine ecosystemGeneral Pharmacology Toxicology and Pharmaceuticsbiologymobile elementfungilcsh:RM1-950<i>caretta caretta</i>biology.organism_classificationloggerhead sea turtle030104 developmental biologyInfectious Diseaseslcsh:Therapeutics. PharmacologyAeromonasbiology.proteinColistinSeawatermedicine.drugAntibiotics
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Ochrobactrum sp. MPV1 from a dump of roasted pyrites can be exploited as bacterial catalyst for the biogenesis of selenium and tellurium nanoparticles

2017

Bacteria have developed different mechanisms for the transformation of metalloid oxyanions to non-toxic chemical forms. A number of bacterial isolates so far obtained in axenic culture has shown the ability to bioreduce selenite and tellurite to the elemental state in different conditions along with the formation of nanoparticles—both inside and outside the cells—characterized by a variety of morphological features. This reductive process can be considered of major importance for two reasons: firstly, toxic and soluble (i.e. bioavailable) compounds such as selenite and tellurite are converted to a less toxic chemical forms (i.e. zero valent state); secondly, chalcogen nanoparticles have att…

0301 basic medicineBioconversionIron CompoundOchrobactrum sp. MPV1lcsh:QR1-502Metal NanoparticlesSelenious AcidSettore BIO/19 - Microbiologia GeneraleApplied Microbiology and BiotechnologyArsenicalslcsh:MicrobiologyCatalysiRare earth oxyanionschemistry.chemical_compoundAerobic selenite reductionArsenicalChalcogen metalloidsSettore CHIM/02 - Chimica FisicaMineralsAerobic tellurite reductionbiologyAxenic CultureAerobiosiAerobiosisBiochemistryItalyMetalloidTelluriumBiotechnologyBacterial-metalloid interactionSulfidechemistry.chemical_elementBioengineeringSulfidesOchrobactrumCatalysisChalcogen metalloidCatalysis03 medical and health sciencesChalcogenOchrobactrumMetal NanoparticleSeleniumBiosynthesisBacterial-metalloid interactionsMineralRare earth oxyanionResearchBiogenically synthesized nanoparticlesBiogenically synthesized nanoparticlebiology.organism_classificationCombinatorial chemistryMicroscopy Electron030104 developmental biologychemistryBacteriaSeleniumIron CompoundsMicrobial Cell Factories
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Tunable photoluminescence properties of selenium nanoparticles: biogenic versus chemogenic synthesis

2020

Abstract Various technological and biomedical applications rely on the ability of materials to emit light (photoluminescence [PL]), and, among them, metal nanoparticles (NPs) and semi-conductor Quantum Dots (QDs) represent ideal candidates as sensing probes and imaging tools, portraying better PL features than conventional organic dyes. However, the knowledge of PL behavior of semiconductor NPs – i.e., selenium; SeNPs – is still in its infancy, especially for those synthesized by microorganisms. Considering the essential role played by biogenic SeNPs as antimicrobial, anticancer, and antioxidant agents, or food supplements, their PL properties must be explored to take full advantage of them…

Photoluminescencebiogenic selenium nanoparticleQC1-999Nanoparticlechemistry.chemical_elementNanotechnology02 engineering and technologyNanomaterials03 medical and health sciencesstenotrophomonas.stenotrophomonasbiogenic selenium nanoparticlessemiconductor nanoparticlesElectrical and Electronic Engineering030304 developmental biology0303 health sciencesTunable photoluminescencePhysicssemiconductor nanoparticle021001 nanoscience & nanotechnologyFluorescenceAtomic and Molecular Physics and OpticsElectronic Optical and Magnetic Materialschemistryphotoluminescencefluorescence0210 nano-technologySeleniumSemiconductor NanoparticlesBiotechnologyNanophotonics
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Identification and characterization of new prolylendopeptidases (PEPs) from Actinomycetes

2011

Prolylendopeptidases ActinomycetesSettore BIO/19 - Microbiologia Generale
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