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Templated Assembly of Collagen Fibers Directs Cell Growth in 2D and 3D

机译:胶原纤维的模板化装配指导细胞在2D和3D中的生长

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摘要

Collagen is widely used in tissue engineering and regenerative medicine, with many examples of collagen-based biomaterials emerging in recent years. While there are numerous methods available for forming collagen scaffolds from isolated collagen, existing biomaterial processing techniques are unable to efficiently align collagen at the microstructural level, which is important for providing appropriate cell recognition and mechanical properties. Although some attention has shifted to development of fiber-based collagen biomaterials, existing techniques for producing and aligning collagen fibers are not appropriate for large-scale fiber manufacturing. Here, we report a novel biomaterial fabrication approach capable of efficiently generating collagen fibers of appropriate sizes using a viscous solution of dextran as a dissolvable template. We demonstrate that myoblasts readily attach and align along 2D collagen fiber networks created by this process. Furthermore, encapsulation of collagen fibers with myoblasts into non-cell-adherent hydrogels promotes aligned growth of cells and supports their differentiation. The ease-of-production and versatility of this technique will support future development of advanced in vitro tissue models and materials for regenerative medicine.
机译:胶原蛋白广泛用于组织工程和再生医学,近年来出现了许多基于胶原蛋白的生物材料的例子。尽管有许多方法可用于从分离的胶原蛋白形成胶原蛋白支架,但是现有的生物材料加工技术无法在微观结构水平上有效地对齐胶原蛋白,这对于提供适当的细胞识别和机械性能非常重要。尽管一些注意力已经转移到基于纤维的胶原蛋白生物材料的开发上,但是用于生产和排列胶原蛋白纤维的现有技术不适用于大规模的纤维制造。在这里,我们报告了一种新颖的生物材料制造方法,该方法能够使用右旋糖酐的粘性溶液作为可溶模板,有效地产生适当大小的胶原纤维。我们证明成肌细胞很容易附着并沿着此过程创建的2D胶原纤维网络对齐。此外,用成肌细胞将胶原纤维包囊到非细胞粘附的水凝胶中可促进细胞排列生长并支持其分化。这种技术的易生产性和多功能性将支持先进的体外组织模型和再生医学材料的未来发展。

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