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Large-Area Biomolecule Nanopatterns on Diblock Copolymer Surfaces for Cell Adhesion Studies

机译:Diblock共聚物表面上的大面积生物分子纳米图案用于细胞粘附研究

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摘要

Cell membrane receptors bind to extracellular ligands, triggering intracellular signal transduction pathways that result in specific cell function. Some receptors require to be associated forming clusters for effective signaling. Increasing evidences suggest that receptor clustering is subjected to spatially controlled ligand distribution at the nanoscale. Herein we present a method to produce in an easy, straightforward process, nanopatterns of biomolecular ligands to study ligand–receptor processes involving multivalent interactions. We based our platform in self-assembled diblock copolymers composed of poly(styrene) (PS) and poly(methyl methacrylate) (PMMA) that form PMMA nanodomains in a closed-packed hexagonal arrangement. Upon PMMA selective functionalization, biomolecular nanopatterns over large areas are produced. Nanopattern size and spacing can be controlled by the composition of the block-copolymer selected. Nanopatterns of cell adhesive peptides of different size and spacing were produced, and their impact in integrin receptor clustering and the formation of cell focal adhesions was studied. Cells on ligand nanopatterns showed an increased number of focal contacts, which were, in turn, more matured than those found in cells cultured on randomly presenting ligands. These findings suggest that our methodology is a suitable, versatile tool to study and control receptor clustering signaling and downstream cell behavior through a surface-based ligand patterning technique.
机译:细胞膜受体与细胞外配体结合,触发细胞内信号转导途径,导致特定的细胞功能。一些受体需要相关的形成簇以进行有效的信号传导。越来越多的证据表明,受体簇在纳米级受到空间控制的配体分布。本文中,我们提出了一种以简单,直接的方法生产生物分子配体纳米图案的方法,以研究涉及多价相互作用的配体-受体过程。我们的平台基于由聚(苯乙烯)(PS)和聚(甲基丙烯酸甲酯)(PMMA)组成的自组装二嵌段共聚物,它们以密排六边形排列形成PMMA纳米域。在PMMA选择性功能化后,将在大面积上产生生物分子纳米图案。纳米图案的尺寸和间距可以通过所选的嵌段共聚物的组成来控制。产生了不同大小和间距的细胞粘附肽纳米图案,并研究了它们对整联蛋白受体聚类和细胞黏着斑形成的影响。配体纳米模式上的细胞显示出更多的焦点接触,这些接触又比在随机呈递的配体上培养的细胞中发现的更为成熟。这些发现表明,我们的方法学是通过基于表面的配体构图技术研究和控制受体聚类信号传导和下游细胞行为的合适,通用的工具。

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