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首页> 外文期刊>Nano letters >Nanopatterns Biofunctionalized with Cell Adhesion Molecule DM-GRASP Offered as Cell Substrate: Spacing Determines Attachment and Differentiation of Neurons
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Nanopatterns Biofunctionalized with Cell Adhesion Molecule DM-GRASP Offered as Cell Substrate: Spacing Determines Attachment and Differentiation of Neurons

机译:以细胞粘附分子DM-GRASP生物功能化的纳米模式作为细胞底物提供:间距决定了神经元的附着和分化

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摘要

The density/spacing of plasma membrane proteins is thought to be crucial for their function; clear-cut experimental evidence, however, is still rare. We examined nanopatterns biofunctionalized with cell adhesion molecule DM-GRASP with respect to their impact on neuron attachment and neurite growth. Data analysis/modeling revealed that these cellular responses improve with increasing DM-GRASP density, with the exception of one spacing which does not allow for the anchorage of a cytoskeletal protein (spectrin) to three DM-GRASP molecules.
机译:人们认为质膜蛋白的密度/间隔对其功能至关重要。但是,清晰的实验证据仍然很少。我们检查了对细胞粘附分子DM-GRASP生物功能化的纳米模式对神经元附着和神经突生长的影响。数据分析/建模表明,这些细胞反应随着DM-GRASP密度的增加而改善,除了一个间距不允许将细胞骨架蛋白(spectrin)锚定到三个DM-GRASP分子上。

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