Institute of Textile Machinery and High Performance Material Technology, Technische Universität Dresden, Germany.
Institute of Textile Machinery and High Performance Material Technology, Technische Universität Dresden, Germany.
Mater Sci Eng C Mater Biol Appl. 2020 Jan;106:110105. doi: 10.1016/j.msec.2019.110105. Epub 2019 Aug 23.
The benefits of fiber based implants and scaffolds for tissue engineering applications are their anisotropic, highly porous, and controllable macro-, micro-, and nanostructure. Collagen is one of the most commonly used material for the fabrication of scaffolds, as this biopolymer is present in the natural extracellular matrix. For textile processing and textile scaffold fabrication methods, multifilament yarns are required, however, only monofilaments can be generated by state-of-the-art collagen spinning. Hence, the research presented in here aimed at the development of a collagen multifilament wet-spinning process in reproducible quality as well as the characterization of non-crosslinked and crosslinked wet-spun multifilament yarns. Wet spun collagen yarns were comprised of 6 single filaments each having a fineness of 5 tex and a diameter of 80 μm. The tensile strength of the glutaraldehyde crosslinked yarns was 169 MPa (Young's modulus 3534 MPa) in the dry state and 40 MPa (Young's modulus 281 MPa) in the wet state. Furthermore, wet spun collagen filaments showed a characteristic fibrillar structure, which was similar the morphological structure of natural collagen fibers. The textile processing of collagen multifilament yarn was demonstrated by means of knitting technology.
纤维基植入物和支架在组织工程应用中的优势在于其各向异性、高度多孔且宏观、微观和纳米结构可控。胶原蛋白是用于支架制造的最常用材料之一,因为这种生物聚合物存在于天然细胞外基质中。对于纺织加工和纺织支架制造方法,需要多丝纱线,但最先进的胶原蛋白纺丝只能生产单丝。因此,这里介绍的研究旨在开发可重复质量的胶原蛋白复丝湿法纺丝工艺,以及表征非交联和交联湿法纺丝复丝纱线。湿法纺制的胶原蛋白纱线由 6 根单丝组成,每根单丝的细度为 5 特克斯,直径为 80 微米。戊二醛交联纱线在干燥状态下的拉伸强度为 169 MPa(杨氏模量 3534 MPa),在湿状态下为 40 MPa(杨氏模量 281 MPa)。此外,湿法纺制的胶原蛋白长丝表现出特征性的纤维状结构,类似于天然胶原蛋白纤维的形态结构。通过针织技术展示了胶原蛋白复丝纱线的纺织加工。