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具有丝Ⅰ结构的丝材料的化学、热、时间和酶稳定性。

Chemical, Thermal, Time, and Enzymatic Stability of Silk Materials with Silk I Structure.

机构信息

National Engineering Laboratory for Modern Silk, College of Textile and Clothing Engineering, Soochow University, Suzhou 215123, China.

Department of Physics and Astronomy, Rowan University, Glassboro, NJ 08028, USA.

出版信息

Int J Mol Sci. 2021 Apr 16;22(8):4136. doi: 10.3390/ijms22084136.

Abstract

The crystalline structure of silk fibroin Silk I is generally considered to be a metastable structure; however, there is no definite conclusion under what circumstances this crystalline structure is stable or the crystal form will change. In this study, silk fibroin solution was prepared from B. Mori silkworm cocoons, and a combined method of freeze-crystallization and freeze-drying at different temperatures was used to obtain stable Silk I crystalline material and uncrystallized silk material, respectively. Different concentrations of methanol and ethanol were used to soak the two materials with different time periods to investigate the effect of immersion treatments on the crystalline structure of silk fibroin materials. X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FTIR), Raman scattering spectroscopy (Raman), Scanning electron microscope (SEM), and Thermogravimetric analysis (TGA) were used to characterize the structure of silk fibroin before and after the treatments. The results showed that, after immersion treatments, uncrystallized silk fibroin material with random coil structure was transformed into Silk II crystal structure, while the silk material with dominated Silk I crystal structure showed good long-term stability without obvious transition to Silk II crystal structure. α-chymotrypsin biodegradation study showed that the crystalline structure of silk fibroin Silk I materials is enzymatically degradable with a much lower rate compared to uncrystallized silk materials. The crystalline structure of Silk I materials demonstrate a good long-term stability, endurance to alcohol sterilization without structural changes, and can be applied to many emerging fields, such as biomedical materials, sustainable materials, and biosensors.

摘要

丝素纤维的结晶结构通常被认为是一种亚稳态结构;然而,在什么情况下这种结晶结构是稳定的,或者晶体形式会发生变化,还没有明确的结论。在这项研究中,我们从家蚕茧中提取丝素蛋白溶液,采用冷冻结晶和不同温度冷冻干燥相结合的方法,分别获得稳定的丝素 I 型结晶材料和未结晶丝素材料。然后使用不同浓度的甲醇和乙醇对两种材料进行不同时间的浸泡处理,以研究浸泡处理对丝素纤维材料结晶结构的影响。采用 X 射线衍射(XRD)、傅里叶变换红外光谱(FTIR)、拉曼散射光谱(Raman)、扫描电子显微镜(SEM)和热重分析(TGA)对处理前后丝素蛋白的结构进行了表征。结果表明,经过浸泡处理后,具有无规卷曲结构的未结晶丝素纤维材料转变成了 Silk II 晶体结构,而以 Silk I 晶体结构为主的丝素材料表现出良好的长期稳定性,没有明显向 Silk II 晶体结构转变的迹象。α-糜蛋白酶生物降解研究表明,丝素纤维 Silk I 型材料的结晶结构具有较低的酶降解率,与未结晶丝素材料相比。Silk I 型材料的结晶结构具有良好的长期稳定性、对酒精消毒的耐受力且不发生结构变化,可以应用于许多新兴领域,如生物医学材料、可持续材料和生物传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59cf/8073524/bf9523a41de1/ijms-22-04136-g001.jpg

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