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The effects of concentration-dependent morphology of self-assembling RADA16 nanoscaffolds on mixed retinal cultures

机译:浓度形态学的影响自组装的RADA16 nanoscaffolds混合视网膜的文化

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RADA16 self-assembling peptide nanofiber scaffolds (SAPNSs) have been shown to have positive effects on neural regeneration following injury to the central nervous system in vivo, but mechanisms are unclear. Here we show that RADA16 SAPNSs form scaffolds of increasing fiber density with increasing peptide concentration which in turn has a concentration-dependent effect on neurons and astrocytes in mixed retinal cultures. Importantly, we report that the final nanoscale fiber architecture is an important factor to consider in designing scaffolds to promote regeneration in the central nervous system.
机译:RADA16自组装多肽纳米纤维支架(SAPNSs)已被证明有正面的影响在损伤后的神经再生中枢神经系统体内,但机制尚不清楚。支架的增加纤维密度肽浓度进而增加浓度影响神经元和星形胶质细胞在视网膜混合文化。重要的是,我们的报告,最终的纳米级纤维结构是一个重要的因素考虑在设计支架促进在中枢神经系统再生。

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