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- W2810352406 endingPage "1005" @default.
- W2810352406 startingPage "995" @default.
- W2810352406 abstract "Engineered tissue constructs rely on biomaterials as support structures for tissue repair and regeneration. Among these biomaterials, polyester biomaterials have been widely used for scaffold construction because of their merits such as ease in synthesis, degradable properties, and elastomeric characteristics. To mimic the aligned structures of native extracellular matrix (ECM) in tissues such as nerve, heart and tendon, various polyester materials have been fabricated into aligned fibrous scaffolds with fibers ranging from several nanometers to several micrometers in diameter by electrospinning in a simple and reproducible manner. These aligned fibrous scaffolds, especially the three-dimensional (3D) aligned nanofibrous scaffolds have emerged as a promising solution for tissue regeneration. Compared with two-dimensional (2D) scaffolds, the 3D aligned nanofibrous scaffolds provide another dimension for cell behaviors such as morphogenesis, migration and cell–cell interactions, which is important in regulating the stem cell fate and tissue regeneration. In this review, we provide an extensive overview on recent efforts for constructing 3D aligned polyester nanofibrous scaffolds by electrospinning, then the results of cell-specific functions dependent on such physical and chemical cues, and discuss their potentials in improving or restoring damaged tissues." @default.
- W2810352406 created "2018-07-10" @default.
- W2810352406 creator A5012612954 @default.
- W2810352406 creator A5030041291 @default.
- W2810352406 creator A5032014170 @default.
- W2810352406 creator A5034981349 @default.
- W2810352406 creator A5048874089 @default.
- W2810352406 creator A5055919572 @default.
- W2810352406 creator A5066089549 @default.
- W2810352406 date "2018-11-01" @default.
- W2810352406 modified "2023-10-12" @default.
- W2810352406 title "Electrospun three-dimensional aligned nanofibrous scaffolds for tissue engineering" @default.
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