Matches in SemOpenAlex for { <https://semopenalex.org/work/W2264448081> ?p ?o ?g. }
- W2264448081 endingPage "102" @default.
- W2264448081 startingPage "83" @default.
- W2264448081 abstract "In the last decade, bicomponent fibers have been proposed to fabricate bio-inspired systems for tissue repair, regenerative medicine, medical healthcare and clinical applications. In comparison with monocomponent fibers, key advantage concerns their ability of self-adapting to the physiological conditions through an extended pattern of signals – morphological, chemical and physical ones – confined at the single fiber level. Hydrophobic/hydrophilic phases may be variously organized by tuneable processing modes (i.e., blending, core/shell, interweaving) thus offering different benefits in terms of biological activity, fluid sorption and molecular transport properties (first generation). The possibility to efficiently graft cell-adhesive proteins and peptide sequences onto the fiber surface mediated by spacers or impregnating hydrogels allows to trigger cell late activities by a controlled and sustained release in vitro of specific biomolecules (i.e., morphogens, growth factors). Here, we introduce an overview of current approaches based on bicomponent fiber use as extra cellular matrix analogs with cell-instructive functions and hierarchal organization of living tissues." @default.
- W2264448081 created "2016-06-24" @default.
- W2264448081 creator A5005504524 @default.
- W2264448081 creator A5055227318 @default.
- W2264448081 creator A5071927480 @default.
- W2264448081 date "2015-12-19" @default.
- W2264448081 modified "2023-10-16" @default.
- W2264448081 title "Bicomponent electrospun scaffolds to design extracellular matrix tissue analogs" @default.
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