Chen Xuefei, Zhou Lingling, Xu Huaizhong, Yamamoto Masaki, Shinoda Masaya, Kishimoto Masanori, Tanaka Tomonari, Yamane Hideki
Department of Biobased Materials Science, Kyoto Institute of Technology, Kyoto 606-8585, Japan.
Textile Research Institute of Gunma, Gunma 376-0011, Japan.
Materials (Basel). 2020 Jan 14;13(2):377. doi: 10.3390/ma13020377.
Dehydrothermal (DHT) treatment was used to improve the properties of collagen casings because of its non-cytotoxicity. Understanding the effects of DHT treatment on the structure and mechanical properties of collagen films is beneficial to developing satisfying collagen casings. Herein, DHT treatment with various temperatures (85-145 °C) and timescales (1-7 days) were investigated. It was clarified that the chemical crosslinking covalent bond between collagen molecules was formed after the DHT treatment. Crosslinking density increased with increasing DHT treatment temperatures, contributing to the increase of tensile strength up to over three times of that of the untreated collagen film. The increased crosslinking density was also found when increasing the DHT treatment time, and the maximum was obtained in 3 days. Further DHT treatment time did not change the crosslinking density. The damage in the triple helix structure and the self-assembly of collagen molecules were observed from IR and SAXS. The extent of denaturation increased with increasing DHT treatment temperature and time, although the effect of the DHT treatment time on the denaturation was more moderate. When the DHT treatment temperature was as high as 145 °C or the DHT treatment time exceeded 5 days, serious denaturation occurs, leading to the deterioration of mechanical properties.
由于其无细胞毒性,采用脱水热(DHT)处理来改善胶原蛋白肠衣的性能。了解DHT处理对胶原蛋白膜结构和力学性能的影响有利于开发出令人满意的胶原蛋白肠衣。在此,研究了不同温度(85 - 145°C)和时间尺度(1 - 7天)的DHT处理。结果表明,DHT处理后胶原蛋白分子间形成了化学交联共价键。交联密度随DHT处理温度的升高而增加,导致拉伸强度增加至未处理胶原蛋白膜的三倍以上。增加DHT处理时间时也发现交联密度增加,且在3天时达到最大值。进一步延长DHT处理时间并未改变交联密度。从红外光谱(IR)和小角X射线散射(SAXS)观察到胶原蛋白分子三螺旋结构的破坏和自组装。变性程度随DHT处理温度和时间的增加而增加,尽管DHT处理时间对变性的影响较为缓和。当DHT处理温度高达145°C或DHT处理时间超过5天时,会发生严重变性,导致力学性能恶化。