Aytemiz Derya, Fukuda Yasuhiro, Higuchi Akira, Asano Atsushi, Nakazawa Chikako T, Kameda Tsunenori, Yoshioka Taiyo, Nakazawa Yasumoto
Department of Biotechnology and Life Science, Tokyo University of Agriculture and Technology, 2-24-16 Naka-cho, Koganei, Tokyo 184-8588, Japan.
Department of Applied Chemistry, National Defense Academy, 1-10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan.
Polymers (Basel). 2018 Aug 6;10(8):874. doi: 10.3390/polym10080874.
SF/polyurethane composite non-woven sheet was fabricated to evaluate the cardiovascular tissue engineering materials in the wet state. The compatibility and microstructure analyses were carried out on the fabricated SF/polyurethane composite non-woven sheet by thermal analysis and solid-state NMR analysis in the wet state. To evaluate the modulus of elasticity, a tensile test was performed and supported with dynamic viscoelasticity and mechanical analysis. Results showed that SF/polyurethane composites form domains within the non-woven sheet and are in a finely dispersed state while maintaining their structures at a scale of several tens of nm. Moreover, an increase of the loss tangent with low elastic modulus proved that a micromolecular interaction occurs between silk fibroin (SF) and polyurethane molecules.
制备了丝素蛋白/聚氨酯复合无纺布,以评估其在湿态下作为心血管组织工程材料的性能。通过热分析和固态核磁共振分析,对制备的丝素蛋白/聚氨酯复合无纺布在湿态下进行了相容性和微观结构分析。为了评估弹性模量,进行了拉伸试验,并辅以动态粘弹性和力学分析。结果表明,丝素蛋白/聚氨酯复合材料在无纺布内形成微区,呈精细分散状态,同时在几十纳米的尺度上保持其结构。此外,低弹性模量下损耗角正切的增加证明了丝素蛋白(SF)与聚氨酯分子之间发生了微分子相互作用。