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Compressed collagen constructs with optimized mechanical properties and cell interactions for tissue engineering applications

机译:具有优化的机械性能和组织工程应用的机械性能和细胞相互作用的压缩胶原构建体

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摘要

In this study, we are introducing a simple, fast and reliable add-in to the technique of plastic compression (PC) to obtain collagen sheets with decreased fibrillar densities, representing improved cell-interactions and mechanical properties. Collagen hydrogels with different initial concentrations (1.64mg/mL-0.41mg/mL) were compressed around an electrospun sheet of PLGA. The scaffolds were then studied as non-seeded, or seeded with 3T3 fibroblast cells and cultured for 7 days. Confocal microscopy and TEM imaging of non-seeded scaffolds showed that by decreasing the share of collagen in the hydrogel formula, collagen sheets with similar thickness but lower fibrous densities were achieved. Nanomechanical characterization of compressed collagen sheets by AFM showed that Young's modulus was inversely proportional to the final concentration of collagen. Similarly, according to SEM, MTS, and cell nuclei counting, all the scaffolds supported cell adhesion and proliferation, whilst the highest metabolic activities and proliferation were seen in the scaffolds with lowest collagen content in hydrogel formula. We conclude that by decreasing the collagen content in the formula of collagen hydrogel for plastic compression, not only a better cell environment and optimum mechanical properties are achieved, but also the application costs of this biopolymer is reduced.
机译:在这项研究中,我们正在向塑料压缩(PC)的技术引入简单,快速可靠的加载方法,以获得具有降低的纤维状密度的胶原片,其代表改善的细胞相互作用和机械性能。在PLGA的电纺片周围压缩具有不同初始浓度(1.64mg / ml-0.41mg / ml)的胶原水凝胶。然后将支架用于非接种,或用3T3成纤维细胞播种并培养7天。非种子支架的共聚焦显微镜和TEM成像表明,通过减少水凝胶配方中胶原蛋白的份额,实现了厚度相似但较低纤维密度的胶原片。 AFM压缩胶原纸的纳米力学表征显示,杨氏模量与胶原的最终浓度成反比。类似地,根据SEM,MTS和细胞核计数,所有支架都支持细胞粘附和增殖,而在水凝胶配方中最低的胶原烷含量的支架中看到最高的代谢活性和增殖。我们得出结论,通过减少胶原水凝胶的式中的胶原蛋白含量来塑性压缩,不仅实现了更好的细胞环境和最佳的机械性能,而且还降低了该生物聚合物的施用成本。

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