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How Substrate Properties Control Cell Adhesion. A Physical-Chemical Approach

机译:底物性质如何控制细胞粘附。物理化学方法

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Most living cells derived from solid tissues require an adhering surface to live in vitro conditions. A good understanding of the relationships between the behavior of cells and the physicochemical properties of substrates such as the surface free energy, the surface polarity, the presence of functional groups and surface charges is of prime importance for the optimization of adhesion, spreading and proliferation of cells. Polystyrene and treated polystyrene surfaces were characterized by determining their surface free energies using wettability measurements. The knowledge of the surface properties of the culture substrates provides a good view of the influence of the substrate properties on cell adhesion. However, this study shows that it is not directly the surface free energy of materials that controls cell adhesion but rather the interfacial free energy between the culture medium and the substrate. The interfacial free energy between the culture medium and the solid surface controls the adsorption of serum components that may inhibit or promote cell adhesion. One of the components inhibiting cell adhesion is serum albumin. The results indicate that the adsorption of serum albumin is related to the interfacial free energy between the culture medium and the substrate. Hydrophilic substrates, such as plasma treated polystyrene substrates, have a lower interfacial free energy with water than hydrophobic polystyrene leading to a lower adsorption of proteins inhibiting cell adhesion. In addition, it is observed that there is a competition between proteins inhibiting (serum albumin) and proteins promoting cell adhesion (such as fibronectin).
机译:大多数源自实体组织的活细胞都需要粘附表面才能在体外存活。充分了解细胞行为与底物的理化特性之间的关系,例如表面自由能,表面极性,官能团和表面电荷的存在,对于优化粘附,扩散和增殖至关重要。细胞。聚苯乙烯和处理过的聚苯乙烯表面的特征是通过使用润湿性测量来确定其表面自由能。培养底物的表面性质的知识提供了底物性质对细胞粘附的影响的良好视图。但是,这项研究表明,控制细胞粘附的不是直接的材料表面自由能,而是培养基和底物之间的界面自由能。培养基和固体表面之间的界面自由能控制可能抑制或促进细胞粘附的血清成分的吸附。抑制细胞粘附的成分之一是血清白蛋白。结果表明,血清白蛋白的吸附与培养基和底物之间的界面自由能有关。亲水性基质(例如经过等离子体处理的聚苯乙烯基质)与水的界面自由能比疏水性聚苯乙烯低,从而导致抑制细胞粘附的蛋白质吸附降低。另外,观察到抑制蛋白(血清白蛋白)和促进细胞粘附的蛋白(例如纤连蛋白)之间存在竞争。

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