Matrix nanotopography as a regulator of cell function.

Matrix nanotopography as a regulator of cell function.
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DOI:
10.1083/jcb.201108062
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发表时间:
2012-04-30
期刊:
The Journal of cell biology
影响因子:
--
通讯作者:
Levchenko A
Levchenko A
中科院分区:
其他
文献类型:
--
作者:
Kim DH;Provenzano PP;Smith CL;Levchenko A

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细胞外基质(ECM)的结构通过提供细胞响应的空间和机械线索来指导细胞行为。除了可溶性化学因子,细胞和ECM之间的物理相互作用调节原代细胞过程,包括分化、迁移和增殖。微技术和最近的纳米技术的进步为研究ECM对细胞行为的影响提供了强有力的手段。通过概括细胞在体内遇到的局部结构,我们可以阐明和剖析在关键发育,生理和病理过程中控制细胞行为的基本信号转导途径。
The architecture of the extracellular matrix (ECM) directs cell behavior by providing spatial and mechanical cues to which cells respond. In addition to soluble chemical factors, physical interactions between the cell and ECM regulate primary cell processes, including differentiation, migration, and proliferation. Advances in microtechnology and, more recently, nanotechnology provide a powerful means to study the influence of the ECM on cell behavior. By recapitulating local architectures that cells encounter in vivo, we can elucidate and dissect the fundamental signal transduction pathways that control cell behavior in critical developmental, physiological, and pathological processes.
层粘连蛋白和仿生细胞外弹性增强了乳腺上皮的功能分化。
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