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- W2418036110 abstract "Stem cells offer optimal cell sources to generate in vitro cellular models for physio/pathological studies and drug screening as well as for cell-based regenerative therapy. Despite the great potential for stem-cell-based applications, challenges including difficulties in efficient in vitro expansion, controlled in vitro tissue formation, and effective in vivo regeneration are hindering the pace of their translation. To overcome these limitations, biomaterials have been used to recreate the complex three-dimensional (3D) natural niches for regulation of stem cell behaviors. This chapter aims to review the advances in biomaterial-assisted stem cell engineering in three aspects: (1) two-dimensional (2D) surfaces and 3D hydrogels/scaffolds engineered to maintain stemness and sustain self-renewal of stem cells for providing reliable cell sources; (2) 3D biomaterials employed to effectively and efficiently differentiate stem cells to desired lineages as well as to establish organotypic constructs mimicking in vivo organogenesis; and (3) decellularized scaffolds, synthetic scaffolds, and hydrogels designed as vehicles for delivering and protecting exogenous stem cells or as stimulators for activating endogenous stem cells to repair and regenerate injured or diseased tissues. Besides introducing some of the most representative works in these areas, this chapter also gives special attention to the advances made in China. Finally, future perspectives and trends in this field will be discussed to highlight the importance of biomaterials in tissue construction and regeneration." @default.
- W2418036110 created "2016-06-24" @default.
- W2418036110 creator A5016480823 @default.
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- W2418036110 creator A5063887888 @default.
- W2418036110 creator A5072697442 @default.
- W2418036110 date "2015-01-01" @default.
- W2418036110 modified "2023-10-16" @default.
- W2418036110 title "Biomaterial-Assisted Stem Cell Engineering for Tissue Construction and Regeneration" @default.
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