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Culturing Fibroblasts in 3D Human Hair Keratin Hydrogels

机译:在3D人发角蛋白水凝胶中培养成纤维细胞

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Human hair keratins are readily available, easy to extract, and eco-friendly materials with natural bioactivities. Keratin-based materials have been studied for applications such as cell culture substrates, internal hemostats for liver injury, and conduits for peripheral nerve repair. However, there are limited reports of using keratin-based 3D scaffolds for cell culture in vitro. Here, we describe the development of a 3D hair keratin hydrogel, which allows for living cell encapsulation under near physiological conditions. The convenience of making the hydrogels from keratin solutions in a simple and controllable manner is demonstrated, giving rise to constructs with tunable physical properties. This keratin hydrogel is comparable to collagen hydrogels in supporting the viability and proliferation of L929 murine fibroblasts. Notably, the keratin hydrogels contract less significantly as compared to the collagen hydrogels, over a 16-day culture period. In addition, preliminary in vivo studies in immunocompetent animals show mild acute host tissue response. These results collectively demonstrate the potential of cell-loaded keratin hydrogels as 3D cell culture systems, which may be developed for clinically relevant applications.
机译:人发角蛋白容易获得,易于提取,并且是具有天然生物活性的环保材料。已经研究了基于角蛋白的材料的应用,例如细胞培养基质,用于肝脏损伤的内部止血剂和用于周围神经修复的导管。但是,关于使用角蛋白基3D支架进行体外细胞培养的报道很少。在这里,我们描述了3D头发角蛋白水凝胶的开发,该凝胶允许在接近生理条件下封装活细胞。证明了以简单和可控制的方式由角蛋白溶液制备水凝胶的便利性,从而产生了具有可调物理性质的构建体。该角蛋白水凝胶在支持L929鼠成纤维细胞的活力和增殖方面可与胶原蛋白水凝胶媲美。值得注意的是,与胶原蛋白水凝胶相比,在16天的培养期内,角蛋白水凝胶的收缩程度较小。另外,对免疫活性动物的初步体内研究显示出轻度的急性宿主组织反应。这些结果共同证明了载有细胞的角蛋白水凝胶作为3D细胞培养系统的潜力,可将其开发用于临床相关应用。

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