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后处理温度或湿度可显著控制丝素蛋白膜的二级结构和特性。

The post-processing temperature or humidity can importantly control the secondary structure and characteristics of silk fibroin films.

作者信息

Wang Hai-Yan, Zhou Su-Fang, Zhang Meng, Wang Heng-Da, Zhang Yu-Qing

机构信息

Department of Obstetrics and Gynecology, The People's Hospital of Suzhou New District, Suzhou, China.

Silk Biotechnology Laboratory, School of Biology and Basic Medical Sciences, Soochow University, Suzhou, China.

出版信息

J Biomed Mater Res A. 2022 Apr;110(4):827-837. doi: 10.1002/jbm.a.37331. Epub 2021 Nov 12.

Abstract

Temperature and humidity (TH) are highly important factors that can control the secondary structure and characterization of silk fibroin (SF) biomaterials. In this study, the water stability, secondary structure, mechanical properties, surface morphology, and degradation of silk fibroin films (SFFs) with post-processing in different TH were investigated. Fourier transform infrared indicated that the SFF secondary structure did not change under low-relative humidity (RH) despite temperatures up to 180°C, while it transformed at 40°C with 100% RH in 10 min. A film with a higher tensile strength (42.1 ± 8.2 MPa) could be obtained after post-processing at 90°C/100% RH for 10 min. While a film with higher ductility (elongation at break: 198.8 ± 31.8%) was generated after post-processing at 40°C/100% RH for 10 min. Scanning electron microscope showed that the film presented a network structure of nanoparticles in series under certain TH post-treatment. Enzymatic hydrolysis proved that the SFFs containing a higher content of silk II structure degraded more slowly. Therefore, TH post-treatment is a relatively mild way to change the secondary structure and properties of SFFs, which can be widely used in loading drugs and maintaining the activity of drugs in SF biomaterials.

摘要

温度和湿度(TH)是能够控制丝素蛋白(SF)生物材料二级结构和特性的极为重要的因素。在本研究中,对在不同温度和湿度条件下后处理的丝素蛋白膜(SFFs)的水稳定性、二级结构、力学性能、表面形态及降解情况进行了研究。傅里叶变换红外光谱表明,在低相对湿度(RH)下,即使温度高达180°C,SFF的二级结构也不会改变,而在100%RH、40°C条件下10分钟内其二级结构就会发生转变。在90°C/100%RH条件下后处理10分钟后可获得具有较高拉伸强度(42.1±8.2MPa)的薄膜。而在40°C/100%RH条件下后处理10分钟后会生成具有较高延展性(断裂伸长率:198.8±31.8%)的薄膜。扫描电子显微镜显示,在特定温度和湿度后处理条件下,薄膜呈现出纳米颗粒串联的网络结构。酶解实验证明,含有较高丝II结构含量的SFFs降解更慢。因此,温度和湿度后处理是改变SFFs二级结构和性能的一种相对温和的方法,可广泛应用于SF生物材料的药物负载及药物活性维持。

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