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Dynamic cell-adhesive microenvironments and their effect on myogenic differentiation

机译:动态细胞粘附微环境及其对成肌分化的影响

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Integrin-mediated cell adhesion plays a central role in cell behavior on biomaterial surfaces and influences various cell functions. Photoactivatable RGD adhesive peptides were used to investigate the effect of the density and time point of bioadhesive ligand presentation on cell adhesion, proliferation and differentiation. PEGylated self-assembled monolayers were functionalized with RGD and caged RGD ligands and seeded with C2C12 myoblasts. The cultures were irradiated at various time points between 1 and 48 h after cell seeding in order to increase RGD surface concentration at defined time points. Attachment, spreading and myogenic differentiation of C2C12 myoblasts strongly varied with the density of RGD at the surface. Proliferation and myogenesis were further regulated by the time point at which RGD was presented to the cell, reaching highest levels when RGD exposure occurred ≤6 h after cell seeding. These results provide fundamental insights in cell-biomaterial interactions of C2C12 myoblasts in terms of temporal integrin-mediated cell responses.
机译:整合素介导的细胞粘附在生物材料表面的细胞行为中起着核心作用,并影响各种细胞功能。使用可光活化的RGD粘附肽来研究生物粘附配体呈递的密度和时间点对细胞粘附,增殖和分化的影响。用RGD和笼状RGD配体对PEG化的自组装单层膜进行功能化,并接种C2C12成肌细胞。细胞接种后1至48小时内的各个时间点对培养物进行辐照,以在规定的时间点增加RGD表面浓度。 C2C12成肌细胞的附着,扩散和成肌分化随表面RGD的密度而变化很大。 RGD出现在细胞中的时间点进一步调节了增殖和肌生成,当细胞接种后≤6 h RGD暴露发生时达到了最高水平。这些结果提供了从时间整合素介导的细胞反应方面C2C12成肌细胞的细胞生物材料相互作用的基本见解。

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