Search results for " Biomaterial"

showing 10 items of 52 documents

Development of New Bio-based Materials Derived from Sicilian Agri-Food Industry Waste

2023

La necessità di soluzioni di materiali da costruzione a base biologica e sostenibili è aumentata drammaticamente nell’ultimo ventennio. Questa ricerca esplora i possibili modi per riutilizzare materiale di scarto a base biologica (come i gusci della frutta secca), derivati dall'industria agroalimentare, per la produzione di nuovi materiali da costruzione sani in linea con i principi dell'economia circolare. L’analisi di alcuni casi di studio precedenti e le attuali ricerche dimostrato la possibilità di riutilizzare i gusci della frutta secca per la realizzazione di nuovi componenti edilizi. Le attuali tendenze mostrano che le resine sintetiche sono sempre più usati come legante per incollar…

Settore ICAR/10 - Architettura TecnicaWaste Biomaterial Circular flow Dried fruit Sicily New economy Hazelnut shell Almond shell Reuse Recycle Sustainability
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Blood Vessel Detection Algorithm for Tissue Engineering and Quantitative Histology.

2021

AbstractImmunohistochemistry for vascular network analysis plays a fundamental role in basic science, translational research and clinical practice. However, identifying vascularization in histological tissue images is time consuming and markedly depends on the operator’s experience. In this study, we present “blood vessel detection—BVD”, an automatic algorithm for quantitative analysis of blood vessels in immunohistochemical images. BVD is based on extraction and analysis of low-level image features and spatial filtering techniques, which do not require a training phase. BVD algorithm performance was comparatively evaluated on histological sections from three different in vivo experiments. …

Settore ING-INF/05 - Sistemi Di Elaborazione Delle InformazioniNeovascularization PathologicTissue EngineeringBiomedical EngineeringImage Processing Computer-AssistedSettore ING-IND/34 - Bioingegneria IndustrialeHumansAngiogenesis Automated image analysis Biomaterials host response Blood vessel formation Blood vessel morphology Quantitative histology Quantitative immunohistochemistry VascularizationImmunohistochemistryAlgorithmsAnnals of biomedical engineering
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Interfacial Self-Assembly to Spatially Organize Graphene Oxide Into Hierarchical and Bioactive Structures

2020

Multicomponent self-assembly holds great promise for the generation of complex and functional biomaterials with hierarchical microstructure. Here, we describe the use of supramolecular co-assembly between an elastin-like recombinamer (ELR5) and a peptide amphiphile (PA) to organize graphene oxide (GO) flakes into bioactive structures across multiple scales. The process takes advantage of a reaction—diffusion mechanism to enable the incorporation and spatial organization of GO within multiple ELR5/PA layers. Scanning electron microscopy (SEM), transmission electron microscopy (TEM), and ImageJ software were used to demonstrate the hierarchical organization of GO flakes within the ELR5/PA lay…

TechnologyMaterials scienceBiocompatibilityScanning electron microscopeMaterials Science (miscellaneous)Materials Sciencecomposite materialsFABRICATIONMaterials Science Multidisciplinaryhierarchical biomaterialsNanotechnology02 engineering and technology010402 general chemistrylcsh:Technology01 natural scienceselastin-like recombinamerlaw.inventionDESIGNlawPeptide amphiphileBIOMATERIALS0912 Materials EngineeringCHITOSANScience & Technology1007 Nanotechnologylcsh:TGrapheneSCAFFOLD021001 nanoscience & nanotechnologyMicrostructurepeptide amphiphiles0104 chemical sciencesmulticomponent self-assemblyDIFFERENTIATIONMembraneTransmission electron microscopygraphene oxideSelf-assembly0210 nano-technologyFILMFrontiers in Materials
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Continuous Microfiber Wire Mandrel‐Less Biofabrication for Soft Tissue Engineering Applications

2022

Suture materials are the most common bioimplants in surgical and clinical practice, playing a crucial role in wound healing and tendon and ligament repair. Despite the assortment available on the market, sutures are still affected by significant disadvantages, including failure in mimicking the mechanical properties of the tissue, excessive fibrosis, and inflammation. This study introduces a mandrel-less electrodeposition apparatus to fabricate continuous microfiber wires of indefinite length. The mandrel-less biofabrication produces wires, potentially used as medical fibers, with different microfiber bundles, that imitate the hierarchical organization of native tissues, and tailored mechan…

TendonsBiomaterialsWound HealingSuturesTissue EngineeringTensile Strengthbiofabrication biomaterials host response medical textiles inflammation macrophagic response.Biomedical EngineeringAnimalsPharmaceutical ScienceRatsAdvanced Healthcare Materials
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Renal transplantation by automatic anastomotic device in a porcine model

2015

Automatic vascular staplers for vascular anastomoses in kidney transplantation may dramatically reduce the operative time and, in particular, warm ischemia time, thus increasing the outcome of transplantation. Ten pigs underwent kidney auto-transplantation by automatic anastomotic device. Kidneys were collected by laparotomy with selective ligations at the renal hilum and perfused with cold storage solution. To overcome the shortage in length of renal hilum, a tract of the internal jugular vein was harvested to increase the length of the vessels. The anastomoses were totally performed by the use of the anastomotic device. On 10 kidney transplants, nine were successful and no complications o…

Vascular anastomosiAnastomosis deviceAnimalSwineMedicine (all)Anastomosis SurgicalBiomedical EngineeringMedicine (miscellaneous)Mechanical vascular sutureWarm ischemia timeBioengineeringKidneyIliac ArteryKidney TransplantationBiomaterialAnastomosis device; Kidney transplantation; Mechanical vascular sutures; Vascular anastomosis; Warm ischemia time; Anastomosis Surgical; Animals; Automation; Disease Models Animal; Female; Iliac Artery; Kidney; Kidney Transplantation; Renal Artery; Swine; Biomaterials; Biomedical Engineering; Bioengineering; Medicine (miscellaneous); Medicine (all)AutomationDisease Models AnimalSettore MED/18 - Chirurgia GeneraleRenal ArteryAnimalsFemale
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Protein materials as sustainable non- and minimally invasive strategies for biomedical applications

2022

Protein-based materials have found applications in a wide range of biomedical fields because of their biocompatibility, biodegradability and great versatility. Materials of different physical forms including particles, hydrogels, films, fibers and microneedles have been fabricated e.g. as carriers for drug delivery, factors to promote wound healing and as structural support for the generation of new tissue. This review aims at providing an overview of the current scientific knowledge on protein-based materials, and selected preclinical and clinical studies will be reviewed in depth as examples of the latest progress within the field of protein-based materials, specifically focusing on non- …

Wound HealingDrug Delivery SystemsProtein-based Biomaterial Non-invasive Drug delivery TopicalProtein-basedTissue EngineeringTopicalDrug deliveryPharmaceutical ScienceBiocompatible MaterialsHydrogelsNon-invasiveBiomaterialJournal of Controlled Release
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Towards purely inorganic clusters in medicine: Biocompatible divalent cations as counterions of cobaltabis(dicarbollide) and its iodinated derivatives

2021

Monovalent cations, Cs+, and alkylammonium ([NR4]+) salts have traditionally been used to precipitate the anions of boranes, carborane and metallocarborane clusters. In contrast, in the body and in living organisms in general, divalent cations have a special relevance. In this work, we isolate for the first time the cobaltabis(dicarbollide) salts of the biocompatible divalent cations of biological importance that can have application both in biology and in materials science. The preparation of Ca2+, Mg2+ and Fe2+ salts of anionic iodinated nido-[C2B9H12]− and cobaltabis(dicarbollide) as well as its di-, tetra- and octa-iodinated derivatives are reported. Ca2+ and Mg2+ are hard Lewis acids a…

X-ray contrastanionitDual-actionBoranesBiochemistryDivalentjodiInorganic Chemistrychemistry.chemical_compoundBone biomaterialsPolymer chemistryMaterials ChemistryAcetoneMoleculeLewis acids and basesPhysical and Theoretical Chemistrychemistry.chemical_classificationkalsiumChemistrydual-action biocompatibleOrganic ChemistrykationitSmall moleculeBiocompatibleX-ray contrastCarboraneCalciumMetallacarboranesCounterionbiomateriaalitIodine
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Synthetic/ECM-inspired hybrid platform for hollow microcarriers with ROS-triggered nanoporation hallmarks

2017

Reactive oxygen species (ROS) are key pathological signals expressed in inflammatory diseases such as cancer, ischemic conditions and atherosclerosis. An ideal drug delivery system should not only be responsive to these signals but also should not elicit an unfavourable host response. This study presents an innovative platform for drug delivery where a natural/synthetic composite system composed of collagen type I and a synthesized polythioether, ensures a dual stimuli-responsive behaviour. Collagen type I is an extracellular matrix constituent protein, responsive to matrix metalloproteinases (MMP) cleavage per se. Polythioethers are stable synthetic polymers characterized by the presence o…

biomedical applicationsPathologyresponsivenessPolymersNanoparticlecardiomyocytes02 engineering and technologyMatrix metalloproteinaseMicroscopy Atomic Force01 natural sciencesreleaseHollow spheresExtracellular matrixDrug Delivery Systemsreactive oxygenCytotoxicitynanomaterialsdegradationchemistry.chemical_classificationDrug CarriersMicroscopyMultidisciplinaryIschemic conditionsQRAtomic ForcePolymerStimuli-responsive021001 nanoscience & nanotechnologyMicrospheresDrug deliveryMedicineROS (Reactive Oxygen Species) inflamed tissue stimuli-responsive biomaterials ischemic conditions hollow spheres polysulfides collagenCollagenhypoxia-reoxygenationdelivery0210 nano-technologyAnimals; Cell Line; Drug Carriers; Drug Delivery Systems; Matrix Metalloproteinases; Microscopy Atomic Force; Microspheres; Polymers; Rats; Reactive Oxygen Speciesmedicine.medical_specialtyROS (Reactive Oxygen Species)ScienceInflamed tissue010402 general chemistryArticleCell LineBiomaterialsPolysulfidesmedicineAnimalsReactive oxygen speciesMicrocarrierMatrix Metalloproteinases0104 chemical sciencesRatschemistrySettore CHIM/09 - Farmaceutico Tecnologico ApplicativoBiophysicsnanoparticlesReactive Oxygen Species
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Biomimetic strategy towards gelatin coatings on PET. Effect of protocol on coating stability and cell-interactive properties

2019

Gelatin-modified poly(ethylene terephthalate) (PET) surfaces have been previously realized via an intermediate dopamine coating procedure that resulted in surfaces with superior haemocompatibility compared to unfunctionalized PET. The present study addresses the biocompatibility assessment of these coated PET surfaces. In this context, the stability of the gelatin coating upon exposure to physiological conditions and its cell-interactive properties were investigated. The proposed gelatin–dopamine-PET surfaces showed an increased protein coating stability up to 24 days and promoted the attachment and spreading of both endothelial cells (ECs) and smooth muscle cells (SMCs). In parallel, physi…

food.ingredientBiocompatibilityCellBiomedical Engineering02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesGelatinfoodCoatingSmooth muscleBiomimeticsmedicineGeneral Materials ScienceChemistryPolyethylene TerephthalatesGeneral ChemistryGeneral Medicine021001 nanoscience & nanotechnology0104 chemical sciencesPolyestermedicine.anatomical_structureengineeringSurface modificationGelatin0210 nano-technologyVascular graftBiomedical engineeringSURFACE MODIFICATION; CHEMISTRY; POLYESTER; ADHESION; FUNCTIONALIZATION; BIOCOMPATIBILITY; IMMOBILIZATION; PROLIFERATION; COMPATIBILITY; BIOMATERIALS
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Multilayer porous PLA scaffolds for tissue engineering applications

2013

scaffold PLA biomaterials
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