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Biomaterials for Tissue Engineering and Regeneration

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

keratin hydrolysate; bioactive keratin; skin homeostasis restoration; skin wound healing; decellularization; Tergitol; valve bioprostheses; cardiac tissue engineering; mesenchymal stem cells; biocompatibility; oxidized sodium alginate; oxidation degree; biodegradation gelation ability; rheological properties; ascorbate; ascorbyl palmitate; drug delivery; cellular uptake; nanoparticles; antitumor effect; collagen; tissue engineering; biomaterials; scaffolds; heparinize; bovine pericardium; scaffold; hemocompatibility; endothelialization; extracellular matrix; porcine pericardium; high hydrostatic pressurization method; surfactant method; 3D fabrication; ligament; hydrogel; diabetic foot; wound dressing; bioactive glass; polylactic acid; electrochemical evaluations; homografts; ischaemic harvesting; cryopreservation; glutaraldehyde-fixation; alginate; chitosan; bone regeneration; composite; polymer; graphene; osteogenesis; rat femur defect; in vivo; bone healing; injectable hydrogel; chondrocytes; co-cultures; subcutaneous implantation; cartilage regeneration; PLGA; electrospinning; morphology; immune response; microscopy; defect; bone remodeling; bovine hydroxyapatite; calcium lactate; BHA–GEL pellet; PCL-PEG; polymer micelle; drug cargo; breast cancer; cross-linked hyaluronic acid; nano hydroxyapatite; bone morphogenetic protein; injection-type bone forming material; ectopic bone formation; bone augmentation; cell culture; fibroblasts; gelatin; GelMA; XPS (X-ray photoelectron spectroscopy); tensile properties; in vitro study

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Información

Tipo de recurso:

libros

ISBN electrónico

978-3-0365-6360-2

País de edición

Suiza