Yazawa Kenjiro, Iwata Shunsuke, Gotoh Yasuo
Department of Applied Biology, Faculty of Textile Science and Technology, Shinshu University, 3-15-1 Tokida, Ueda, Nagano 386-8567, Japan.
Division of Biological and Medical Fibers, Interdisciplinary Cluster for Cutting Edge Research, Institute for Fiber Engineering, Shinshu University, 3-15-1, Tokida, Ueda, Nagano 386-8567, Japan.
Biomacromolecules. 2023 Apr 10;24(4):1700-1708. doi: 10.1021/acs.biomac.2c01476. Epub 2023 Mar 14.
Wild silkworm silk fibers have garnered attention owing to their softness, natural color, lightweight, and excellent mechanical properties. Because most wild silkworm cocoons obtained are pierced or dirty after the eclosion process, it is difficult to reel the long filament from the pierced cocoons to use as textile materials. Therefore, damaged wild silkworm cocoons are typically removed during the industrial process. Artificial silk spinning has been developed to transform domesticated silkworm silk solutions into regenerated silk fibers. However, regenerated fibers derived from wild silkworm silk have not been reported. Here, we produced regenerated silk fibers using a dry-wet spinning method using a dope solution derived from wild silkworm silk cocoon wastes. These regenerated silk fibers have thick and uniform diameters, unlike native silk fibers, contributing to their usefulness for sterilization and handling in medical applications. Moreover, they exhibited the same level of mechanical strength as their native counterparts. The molecular orientation and crystallinity of the regenerated silk fibers were adjustable by the drawing process, enabling the realization of their various tensile properties. This study promotes the utilization of unused protein resources to produce mechanically stable and tough silk-based fibers.
野生蚕丝纤维因其柔软性、天然色泽、轻质以及出色的机械性能而备受关注。由于所获得的大多数野生蚕茧在羽化过程后被刺破或弄脏,因此很难从被刺破的蚕茧中缫出长丝用作纺织材料。因此,在工业过程中通常会去除受损的野生蚕茧。人工丝纺技术已被开发出来,用于将家蚕丝溶液转化为再生丝纤维。然而,尚未有关于源自野生蚕丝的再生纤维的报道。在此,我们使用干湿纺丝法,以源自野生蚕茧废弃物的纺丝原液生产出了再生丝纤维。与天然丝纤维不同,这些再生丝纤维具有粗细均匀的直径,这有助于它们在医疗应用中的消毒和处理。此外,它们表现出与天然丝纤维相同水平的机械强度。再生丝纤维的分子取向和结晶度可通过拉伸过程进行调节,从而能够实现其各种拉伸性能。这项研究促进了对未利用蛋白质资源的利用,以生产机械性能稳定且坚韧的丝基纤维。