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Patterning Biochemical Signals into Nanofibrous Hydrogels to Spatially Control Cell Behavior

机译:将生化信号图案化成纳米纤维水凝胶以空间控制细胞行为

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Importantly, this work introduces spatial control of biochemical signaling in a scaffold with more biophysically relevant features (hydrogel mechanics, nanofibrous topography), thus enabling tissue-engineering strategies that better mimic natural ECM architecture. Ongoing and future work is underway observing cell response to spatial signaling in scaffolds with nanofiber alignment (attained through electrospinning mandrel collector speed) to further probe the roles biochemical and biophysical signals play in altering cell responses.
机译:重要的是,这项工作在具有更多生物物理相关特征(水凝胶力学,纳米纤维形貌)的支架中引入了生化信号的空间控制,从而实现了更好地模仿自然ECM结构的组织工程策略。正在进行和未来的工作正在进行中,以纳米纤维排列(通过电纺芯棒收集器速度获得)观察支架对空间信号传导的细胞反应,以进一步探究生化和生物物理信号在改变细胞反应中所起的作用。

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