Peng Qingfa, Shao Huili, Hu Xuechao, Zhang Yaopeng
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University.
State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, College of Materials Science and Engineering, Donghua University;
J Vis Exp. 2017 Sep 4(127):56271. doi: 10.3791/56271.
The protocol demonstrates a method for mimicking the spinning process of silkworm. In the native spinning process, the contracting spinning duct enables the silk proteins to be compact and ordered by shearing and elongation forces. Here, a biomimetic microfluidic channel was designed to mimic the specific geometry of the spinning duct of the silkworm. Regenerated silk fibroin (RSF) spinning doped with high concentration, was extruded through the microchannel to dry-spin fibers at ambient temperature and pressure. In the post-treated process, the as-spun fibers were drawn and stored in ethanol aqueous solution. Synchrotron radiation wide-angle X-ray diffraction (SR-WAXD) technology was used to investigate the microstructure of single RSF fibers, which were fixed to a sample holder with the RSF fiber axis normal to the microbeam of the X-ray. The crystallinity, crystallite size, and crystalline orientation of the fiber were calculated from the WAXD data. The diffraction arcs near the equator of the two-dimensional WAXD pattern indicate that the post-treated RSF fiber has a high orientation degree.
该方案展示了一种模拟蚕吐丝过程的方法。在天然吐丝过程中,收缩的吐丝管通过剪切力和拉伸力使丝蛋白变得致密且有序。在此,设计了一种仿生微流控通道来模拟蚕吐丝管的特定几何形状。将高浓度掺杂的再生丝素蛋白(RSF)通过微通道挤出,在常温常压下进行干纺纤维。在后处理过程中,对初纺纤维进行拉伸并储存在乙醇水溶液中。利用同步辐射广角X射线衍射(SR-WAXD)技术研究单根RSF纤维的微观结构,将RSF纤维轴垂直于X射线微束固定在样品架上。根据WAXD数据计算纤维的结晶度、微晶尺寸和结晶取向。二维WAXD图谱赤道附近的衍射弧表明,后处理的RSF纤维具有较高的取向度。