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孵育温度对再生丝素蛋白自组装的影响:原子力显微镜研究。

Effect of incubation temperature on the self-assembly of regenerated silk fibroin: a study using AFM.

机构信息

National Engineering Research Center for Nanotechnology, Shanghai 200241, People's Republic of China.

Department of Medical Imaging, Jinan Military General Hospital, No. 25 Shifan Road, Jinan, Shandong Province, People's Republic of China.

出版信息

Int J Biol Macromol. 2015 May;76:195-202. doi: 10.1016/j.ijbiomac.2015.02.045. Epub 2015 Mar 5.

Abstract

Understanding effect of temperature on the molecular self-assembly process will be helpful to unravel the structure-function relationship of biomolecule and to provide important information for the bottom-up approach to nanotechnology. In this work, the effect of incubation temperature on the secondary structures and morphological structures of regenerated silk fibroin (RSF) was systematically studied using atomic force microscopy and Fourier Transform infrared spectroscopy. The effect of incubation temperature on RSF self-assembly was dependent on RSF concentration. For the RSF solution with relatively low concentrations (15 μg/mL and 60 μg/mL), the increase of the incubation temperature mainly accelerated the formation and aggregation of antiparallel β-sheet protofibrils and decreased the formation of random coil protofilaments/globule-like molecules. For the RSF solution with relatively high concentrations (300 μg/mL and 1.5mg/mL), the increase of the incubation temperature mainly accelerated the formation and aggregation of antiparallel β-sheet RSF features (protofibrils and globule-like features) and decreased the formation of random coil bead-like features. This work implies that the morphology and conformation of biomacromolecules could be tuned by controlling the incubation temperature. Further, it will be beneficial to basic understanding of the nanoscale structure formation in different silk-based biomaterials.

摘要

了解温度对分子自组装过程的影响将有助于揭示生物分子的结构-功能关系,并为基于自下而上的纳米技术提供重要信息。在这项工作中,使用原子力显微镜和傅里叶变换红外光谱系统地研究了孵育温度对再生丝素蛋白(RSF)二级结构和形态结构的影响。孵育温度对 RSF 自组装的影响取决于 RSF 浓度。对于相对较低浓度(15μg/mL 和 60μg/mL)的 RSF 溶液,孵育温度的升高主要加速了反平行β-折叠原纤维的形成和聚集,并减少了无规卷曲原丝/球状分子的形成。对于相对较高浓度(300μg/mL 和 1.5mg/mL)的 RSF 溶液,孵育温度的升高主要加速了反平行β-折叠 RSF 特征(原纤维和球状特征)的形成和聚集,并减少了无规卷曲珠状特征的形成。这项工作表明,可以通过控制孵育温度来调节生物大分子的形态和构象。此外,这将有助于深入了解不同丝基生物材料中纳米尺度结构的形成。

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