Search results for "bioactive"

showing 10 items of 205 documents

Biotechnological Applications for the Sustainable Use of Marine By-products: In Vitro Antioxidant and Pro-apoptotic Effects of Astaxanthin Extracted …

2019

In this study, the carotenoid astaxanthin was obtained by supercritical fluid extraction (SFE) from shrimp by-products (SBP). Its bioactive properties were evaluated in vitro in human normal and cancerous cells lines. The antioxidant activity of the extracted astaxanthin of the SFE fraction (ASTA) was tested in fibroblast cells (HS-68), by inducing oxidative stress and by evaluating the protective effect of the pre-treatment with different levels of ASTA against toxicity. The anti-proliferative activity was evaluated in hepatoma cells (HEP-G2), treated with increased concentrations of ASTA and measuring the effects on vitality and on some biomolecular markers related to oxidative stress, ce…

0106 biological sciences0301 basic medicineMarine bioactive compoundAntioxidantmedicine.medical_treatmentBiologymedicine.disease_causeSupercritical fluid extraction01 natural sciencesApplied Microbiology and Biotechnology03 medical and health scienceschemistry.chemical_compoundNutraceuticalSettore AGR/20 - ZoocoltureAstaxanthin010608 biotechnologymedicineFood scienceSettore BIO/06 - Anatomia Comparata E CitologiaCarotenoidchemistry.chemical_classificationAnti-proliferativeAstaxanthinApoptosiMarine bioactive compounds Astaxanthin Supercritical fluid extraction Antioxidants Anti-proliferative Apoptosis030104 developmental biologychemistryCell cultureApoptosisToxicityAntioxidantOxidative stressMarine Biotechnology
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Improved Extraction Efficiency of Antioxidant Bioactive Compounds from Tetraselmis chuii and Phaedoactylum tricornutum Using Pulsed Electric Fields

2020

Pulsed electric fields (PEF) is a promising technology that allows the selective extraction of high-added value compounds by electroporation. Thus, PEF provides numerous opportunities for the energy efficient isolation of valuable microalgal bioactive substances (i.e., pigments and polyphenols). The efficiency of PEF-assisted extraction combined with aqueous or dimethyl sulfoxide (DMSO) solvents in recovering pigments and polyphenols from microalgae Tetraselmis chuii (T. chuii) and Phaeodactylum tricornutum (P. tricornutum) was evaluated. Two PEF treatments were applied: (1 kV/cm/400 pulses, 3 kV/cm/45 pulses), with a specific energy input of 100 kJ/kg. The total antioxidant capacity (TAC) …

0106 biological sciencesChlorophyll bAntioxidantmedicine.medical_treatmentPharmaceutical ScienceTetraselmis chuii01 natural sciencesPhaeodactylum tricornutumArticleAntioxidantsAnalytical Chemistrylcsh:QD241-441chemistry.chemical_compound0404 agricultural biotechnologylcsh:Organic chemistryChlorophyta010608 biotechnologyDrug DiscoverymedicineMicroalgaePhaeodactylum tricornutum<i>Phaeodactylum tricornutum</i>Physical and Theoretical ChemistryTetraselmis<i>Tetraselmis chuii</i>Carotenoidchemistry.chemical_classificationDiatomsChromatographybiologyChemistryDimethyl sulfoxideOrganic ChemistryExtraction (chemistry)Polyphenols04 agricultural and veterinary sciencesbiology.organism_classification040401 food science6. Clean waterElectroporationpulsed electric fieldsChemistry (miscellaneous)PolyphenolextractionMolecular Medicineantioxidant bioactive compoundsMolecules
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Antifungal and antimycotoxigenic activity of hydrolyzed goat whey on Penicillium spp: An application as biopreservation agent in pita bread

2020

Abstract Whey is a by-product of the cheese industry, yet it contains proteins that have a high nutritional value and are an important source of antifungal peptides. Food deterioration caused by toxigenic fungi is one of the challenges of food safety. In this context, trypsin was used to hydrolyse goat milk whey at 37. The resultant peptides were characterised by LC–ESI–TOF-MS. Antifungal activity of the goat milk whey hydrolysate (HGW) was determined against 10 toxigenic fungi from the genus Penicillium, in solid and liquid media. Furthermore, HGW was used as an ingredient for bread elaboration. Bread elaborated with HGW and inoculated with toxigenic fungi was included in a shelf-life stud…

0106 biological sciencesContext (language use)01 natural sciencesHydrolysateAntifungal peptideBioactive peptideMinimum inhibitory concentrationchemistry.chemical_compoundIngredient0404 agricultural biotechnology010608 biotechnologyWheyFood scienceMycotoxinchemistry.chemical_classificationbiologyShelf-lifedigestive oral and skin physiologyfood and beverages04 agricultural and veterinary sciencesBiopreservationbiology.organism_classificationToxigenic fungi040401 food sciencechemistryPenicilliumPropionateFood Science
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The Application of a Plant Biostimulant Based on Seaweed and Yeast Extract Improved Tomato Fruit Development and Quality

2020

Plant biostimulants are under investigation as innovative products to improve plant production and fruit quality, without resulting in environmental and food contaminations. Here, the effects of the application of Expando, a biostimulant based on seaweed and yeast extracts, on plant productivity, fruit ripening times, and fruit quality of Solanum lycopersicum var. Micro-Tom were evaluated. After biostimulant treatment, a two-week reduction of ripening times and a concomitant enhancement of the production percentage during the earliest ripening times, in terms of both fruit yield (+110%) and size (+85%), were observed. Concerning fruit quality, proximate analysis showed that tomatoes treated…

0106 biological sciencesDPPHPhytochemicalslcsh:QR1-50201 natural sciencesBiochemistryripening timeAntioxidantslcsh:Microbiologychemistry.chemical_compoundSolanum lycopersicumSettore BIO/10 - BiochimicaYeastsSettore BIO/04 - Fisiologia Vegetale0303 health sciencesMineralsABTSbiologyChemistry<i>Solanum lycopersicum</i>carotenoidsfood and beveragesRipeningfruit sizeBioactive compoundLycopeneHorticulturetocopherolsmineral contentArticle03 medical and health sciencesNutraceuticalPicratesYeast extractBenzothiazolesMolecular Biologypolyphenols030304 developmental biologySolanum lycopersicum; carotenoids; fruit quality; fruit size; lycopene; mineral content; polyphenols; ripening time; tocopherolsBiphenyl Compoundsfungifruit qualitybiology.organism_classificationSeaweedlycopeneFruitCarotenoids Fruit quality Lycopene Mineral content Polyphenols Ripening time Solanum lycopersicum TocopherolsSolanumSulfonic Acids010606 plant biology & botany
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Innovative technologies for encapsulation of Mediterranean plants extracts

2017

Abstract Background High-added value biological compounds (BACs) from herbal and plant sources, such as essential oils (EO), antioxidants and volatile compounds, often exhibit remarkable features, ranging from nutritive and medicinal properties, as well as antimicrobial and antioxidant activities, which can be exploited in the production of functional foods. However, most BACs exhibit low water solubility, strong off-flavors/odors, and are generally unstable and easily degraded under common processing and storage conditions. Encapsulation is a technology that enables the delivery in food systems, the protection, as well as the controlled and targeted release of BACs. Scope and approach The …

0106 biological sciencesEngineeringMediterranean herbs01 natural sciencesBioactive compounds0404 agricultural biotechnology010608 biotechnologyTargeted release2. Zero hungerbusiness.industryfood and beverages04 agricultural and veterinary sciences040401 food scienceEncapsulation (networking)BiotechnologyPlant extractGreen food13. Climate actionEssential oilsSpray dryingEncapsulation ; Plant extract ; Bioactive compounds ; Essential oils ; Volatile compounds ; Mediterranean herbsVolatile compoundsFood systemsEncapsulationBiochemical engineeringbusinessBioactive compounds; Encapsulation; Essential oils; Mediterranean herbs; Plant extract; Volatile compounds; Biotechnology; Food ScienceBiotechnologyFood Science
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Impact of Pressurized Liquid Extraction and pH on Protein Yield, Changes in Molecular Size Distribution and Antioxidant Compounds Recovery from Spiru…

2021

The research aims to extract nutrients and bioactive compounds from spirulina using a non-toxic, environmentally friendly and efficient method—Pressurized Liquid Extraction (PLE). In this work, Response Surface Methodology (RSM)–Central Composite Design (CCD) was used to evaluate and optimize the extraction time (5–15 min), temperature (20–60 °C) and pH (4–10) during PLE extraction (103.4 bars). The multi-factor optimization results of the RSM-CCD showed that under the pressure of 103.4 bars, the optimal conditions to recover the highest content of bioactive compounds were 10 min, 40 °C and pH 4. Furthermore, the compounds and antioxidant capacity of PLE and non-pressurized extraction extra…

0106 biological sciencesHealth (social science)AntioxidantPLEmedicine.medical_treatmentTP1-1185Plant Science01 natural sciencesHealth Professions (miscellaneous)MicrobiologyArticleCinnamic acidchemistry.chemical_compoundTriple TOF–LC–MS–MS0404 agricultural biotechnology010608 biotechnologymedicineResponse surface methodologySodium dodecyl sulfatePolyacrylamide gel electrophoresisCarotenoidRSM-CCDchemistry.chemical_classificationbioactive compoundsChromatographyChemical technologymicroalgaeExtraction (chemistry)04 agricultural and veterinary sciences040401 food science6. Clean waterchemistryPolyphenolSDS-PAGEFood ScienceFoods
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Biochemical characterization of cassiopea andromeda (Forsskål, 1775), another red sea jellyfish in the western mediterranean sea

2021

Increasing frequency of native jellyfish proliferations and massive appearance of non-indigenous jellyfish species recently concur to impact Mediterranean coastal ecosystems and human activities at sea. Nonetheless, jellyfish biomass may represent an exploitable novel resource to coastal communities, with reference to its potential use in the pharmaceutical, nutritional, and nutraceutical Blue Growth sectors. The zooxanthellate jellyfish Cassiopea andromeda, Forsskål, 1775 (Cnidaria, Rhizostomeae) entered the Levant Sea through the Suez Canal and spread towards the Western Mediterranean to reach Malta, Tunisia, and recently also the Italian coasts. Here we report on the biochemical characte…

0106 biological sciencesMediterranean climateCnidariacollagenAquatic OrganismsJellyfishScyphozoaPharmaceutical Scienceantioxidant activityalien species01 natural sciencesBioactive marine compoundMediterranean seaDrug DiscoverySuez canalAlien species; Antioxidant activity; Antioxidants; Bioactive marine compounds; Collagen; Fatty acids; Jellyfish; Nutraceuticals; Zooxanthellate jellyfish; Animals; Antioxidants; Aquatic Organisms; Ecosystem; Mediterranean Sea; Dietary Supplements; ScyphozoaBiology (General)Pharmacology Toxicology and Pharmaceutics (miscellaneous)nutraceuticals0303 health sciencesAquatic Organismjellyfishzooxanthellate jellyfishAlien species Antioxidant activity Antioxidants Bioactive marine compounds Collagen Fatty acids Jellyfish Nutraceuticals Zooxanthellate jellyfish Animals Antioxidants Aquatic Organisms Ecosystem Mediterranean Sea Dietary Supplements ScyphozoaantioxidantsZooxanthellaeCollagenNutraceuticalAntioxidantCassiopea andromedaQH301-705.5Biologyfatty acids03 medical and health sciencesNutraceuticalAntioxidant activitybiology.animalBotanyMediterranean SeaAnimalsZooxanthellate jellyfish14. Life underwaterAlien specieEcosystem030304 developmental biologyDietary Supplementbioactive marine compoundsAnimal010604 marine biology & hydrobiologybiology.organism_classificationFatty acidDietary SupplementsJellyfish
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Valuable natural products from marine and freshwater macroalgae obtained from supercritical fluid extracts

2017

The biologically active compounds (fatty acids, pigments, phenolics, and flavonoid content) were studied in supercritical fluid extracts from the biomass of marine (Ulva clathrata, Cladophora glomerata, Polysiphonia fucoides, and their multi-species mixture) and freshwater (C. glomerata) macroalgae. Different extraction techniques were used in order to compare differences in the biologically active compound composition of the macroalgal extracts. The results indicated that the saturated and unsaturated fatty acids ranged from C9:0 to C22:0. The analysis of differences in the composition of unsaturated to saturated fatty acids in extracts showed that palmitic acid (C16:0) and oleic acid (C18…

0106 biological sciencesPlant ScienceAquatic ScienceBiology01 natural sciencesfatty acidsArticlePalmitic acidchemistry.chemical_compoundAlgaeBotanyFood scienceCarotenoidpolyphenolschemistry.chemical_classificationbioactive compounds010405 organic chemistry010604 marine biology & hydrobiologyExtraction (chemistry)Supercritical fluid extractionfood and beveragesUlva clathratabiology.organism_classificationantioxidant properties0104 chemical sciencesOleic acidchemistryPolyphenolsupercritical fluid extractionDPPHJournal of Applied Phycology
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Valorisation of Persimmon and Blueberry By-Products to Obtain Functional Powders: in vitro Digestion and Fermentation by Gut Microbiota

2020

[EN] Globalization of fruit and vegetable markets generates overproduction, surpluses, and potentially valuable residues. The valorization of these byproducts constitutes a challenge, to ensure sustainability and reintroduce them into the food chain. This work focuses on blueberry and persimmon residues, rich in polyphenols and carotenoids, to obtain powders with high added value to be used as ingredients in food formulation. These powders have been characterized, and the changes in the bioactive compounds in in vitro gastrointestinal digestion have been evaluated. The results indicated that the type of residue, the drying process, as well as the content and type of fiber determine the rele…

0106 biological sciencesbiologyTECNOLOGIA DE ALIMENTOSChemistry010401 analytical chemistryIn vitro digestionfood and beveragesGeneral ChemistryGut microbiotaGut florabiology.organism_classificationIn vitro digestion01 natural sciencesColonic fermentationBioactive compounds0104 chemical sciencesFruit byproductsMetagenomicsColonic fermentationFermentationFood scienceMetagenomicsGeneral Agricultural and Biological SciencesOverproduction010606 plant biology & botany
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Changes of bioactive compounds in barley industry by‐products during submerged and solid state fermentation with antimicrobial Pediococcus acidilacti…

2019

Abstract In this study, changes of bioactive compounds (crude protein (CP), crude fat (CF), dietary fiber (DF), fatty acids (FAs), free amino acids (FAAs), phenolic compounds (PCs), biogenic amines (BAs), lignans, and alkylresorcinols) in barley industry by‐products (BB) during submerged and solid state fermentation (SSF) with Pediococcus acidilactici were analyzed. It was established that both fermentation conditions reduce the CP and CF content in BB (by 25.8% and 35.9%, respectively) and increase DF content (on average by 25.0%). Fermentation increases the oleic, arachidic, eicosadienoic, behenic, and lignoceric FA in BB samples. The highest total BA content was found in untreated sample…

0106 biological scienceslcsh:TX341-64101 natural sciences0404 agricultural biotechnologyAlkylresorcinol010608 biotechnologyby‐productsFood sciencePediococcusby-productsbarley ; bioactive compounds ; by-products ; lactic acid bacteria ; PediococcusOriginal Researchbioactive compoundsStrain (chemistry)biologyChemistryPediococcus acidilacticifood and beveragesbarley04 agricultural and veterinary sciencesbiology.organism_classificationAntimicrobial040401 food sciencelactic acid bacteriaSolid-state fermentationby‐products ; bioactive compounds ; lactic acid bacteria ; Pediococcus ; barleyFermentationDietary fiberPediococcuslcsh:Nutrition. Foods and food supplyFood ScienceFood Science & Nutrition
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