Cell adhesion and response to synthetic nanopatterned environments by steering receptor clustering and spatial location.

Hfsp Journal Pub Date : 2008-10-01 Epub Date: 2008-09-29 DOI:10.2976/1.2976662
Elisabetta Ada Cavalcanti-Adam, Daniel Aydin, Vera Catherine Hirschfeld-Warneken, Joachim Pius Spatz
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引用次数: 111

Abstract

During adhesion and spreading, cells form micrometer-sized structures comprising transmembrane and intracellular protein clusters, giving rise to the formation of what is known as focal adhesions. Over the past two decades these structures have been extensively studied to elucidate their organization, assembly, and molecular composition, as well as to determine their functional role. Synthetic materials decorated with biological molecules, such as adhesive peptides, are widely used to induce specific cellular responses dependent on cell adhesion. Here, we focus on how surface patterning of such bioactive materials and organization at the nanoscale level has proven to be a useful strategy for mimicking both physical and chemical cues present in the extracellular space controlling cell adhesion and fate. This strategy for designing synthetic cellular environments makes use of the observation that most cell signaling events are initiated through recruitment and clustering of transmembrane receptors by extracellular-presented signaling molecules. These systems allow for studying protein clustering in cells and characterizing the signaling response induced by, e.g., integrin activation. We review the findings about the regulation of cell adhesion and focal adhesion assembly by micro- and nanopatterns and discuss the possible use of substrate stiffness and patterning in mimicking both physical and chemical cues of the extracellular space.

细胞粘附和响应合成纳米模式的环境通过转向受体集群和空间定位。
在粘附和扩散过程中,细胞形成微米大小的结构,包括跨膜和细胞内蛋白质簇,从而形成所谓的局灶性粘附。在过去的二十年中,人们对这些结构进行了广泛的研究,以阐明它们的组织、组装和分子组成,并确定它们的功能作用。以粘附肽等生物分子修饰的合成材料被广泛用于诱导依赖于细胞粘附的特异性细胞反应。在这里,我们关注的是纳米级生物活性材料和组织的表面图案如何被证明是一种有用的策略,可以模拟细胞外空间中存在的控制细胞粘附和命运的物理和化学线索。这种设计合成细胞环境的策略利用了大多数细胞信号事件是通过细胞外呈递的信号分子的跨膜受体的募集和聚集而启动的这一观察结果。这些系统允许研究细胞中的蛋白质聚集和表征由整合素激活等诱导的信号反应。我们回顾了通过微和纳米模式对细胞粘附和焦点粘附组装的调节的发现,并讨论了在模拟细胞外空间的物理和化学线索中基质刚度和图案的可能使用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Hfsp Journal
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