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The Effect of Amino Density on the Attachment Migration and Differentiation of Rat Neural Stem Cells In Vitro

机译:氨基酸密度对大鼠神经干细胞黏附迁移和分化的影响

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摘要

Artificial extracellular matrices play important roles in the regulation of stem cell behavior. To generate materials for tissue engineering, active functional groups, such as amino, carboxyl, and hydroxyl, are often introduced to change the properties of the biomaterial surface. In this study, we chemically modified coverslips to create surfaces with different amino densities and investigated the adhesion, migration, and differentiation of neural stem cells (NSCs) under serum-free culture conditions. We observed that a higher amino density significantly promoted NSCs attachment, enhanced neuronal differentiation and promoted excitatory synapse formation in vitro. These results indicate that the amino density significantly affected the biological behavior of NSCs. Thus, the density and impact of functional groups in extracellular matrices should be considered in the research and development of materials for tissue engineering.
机译:人工细胞外基质在干细胞行为的调节中起重要作用。为了产生用于组织工程的材料,经常引入活性官能团,例如氨基,羧基和羟基,以改变生物材料表面的性质。在这项研究中,我们化学修饰了盖玻片,以创建具有不同氨基密度的表面,并研究了无血清培养条件下神经干细胞(NSC)的粘附,迁移和分化。我们观察到较高的氨基密度显着促进了NSC的附着,增强了神经元分化并促进了体外兴奋性突触的形成。这些结果表明氨基密度显着影响NSC的生物学行为。因此,在组织工程材料的研究和开发中,应考虑细胞外基质中官能团的密度和影响。

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