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- W2980517102 startingPage "119546" @default.
- W2980517102 abstract "Optogenetics has demonstrated great potential in the fields of tissue engineering and regenerative medicine, from basic research to clinical applications. Spatiotemporal encoding during individual development has been widely identified and is considered a novel strategy for regeneration. A as a noninvasive method with high spatiotemporal resolution, optogenetics are suitable for this strategy. In this review, we discuss roles of dynamic signal coding in cell physiology and embryonic development. Several optogenetic systems are introduced as ideal optogenetic tools, and their features are compared. In addition, potential applications of optogenetics for tissue engineering are discussed, including light-controlled genetic engineering and regulation of signaling pathways. Furthermore, we present how emerging biomaterials and photoelectric technologies have greatly promoted the clinical application of optogenetics and inspired new concepts for optically controlled therapies. Our summation of currently available data conclusively demonstrates that optogenetic tools are a promising method for elucidating and simulating developmental processes, thus providing vast prospects for tissue engineering and regenerative medicine applications." @default.
- W2980517102 created "2019-10-25" @default.
- W2980517102 creator A5005147186 @default.
- W2980517102 creator A5012955908 @default.
- W2980517102 creator A5024612744 @default.
- W2980517102 creator A5032876310 @default.
- W2980517102 creator A5041951758 @default.
- W2980517102 creator A5089030416 @default.
- W2980517102 date "2020-01-01" @default.
- W2980517102 modified "2023-10-17" @default.
- W2980517102 title "Optogenetics sheds new light on tissue engineering and regenerative medicine" @default.
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