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通过溶胶-凝胶法将自旋标记的胰岛素包埋在二氧化硅基质中的结构和动力学。

Structure and dynamics of spin-labeled insulin entrapped in a silica matrix by the sol-gel method.

机构信息

Faculty of Physics & Institute of Interdisciplinary Research in Bio-Nano-Sciences, Babes-Bolyai University, Cluj-Napoca, Romania.

出版信息

Biomacromolecules. 2013 Aug 12;14(8):2582-92. doi: 10.1021/bm4003893. Epub 2013 Jul 2.

Abstract

The structure and conformational dynamics of insulin entrapped into a silica matrix was monitored during the sol to maturated-gel transition by electron paramagnetic resonance (EPR) spectroscopy. Insulin was successfully spin-labeled with iodoacetamide and the bifunctional nitroxide reagent HO-1944. Room temperature continuous wave (cw) EPR spectra of insulin were recorded to assess the mobility of the attached spin labels. Insulin conformation and its distribution within the silica matrix were studied using double electron-electron resonance (DEER) and low-temperature cw-EPR. A porous oxide matrix seems to form around insulin molecules with pore diameters in the order of a few nanometers. Secondary structure of the encapsulated insulin investigated by Fourier transform infrared spectroscopy proved a high structural integrity of insulin even in the dried silica matrix. The results show that silica encapsulation can be used as a powerful tool to effectively isolate and functionally preserve biomolecules during preparation, storage, and release.

摘要

通过电子顺磁共振(EPR)光谱监测到胰岛素在溶胶到成熟凝胶转变过程中被包埋在二氧化硅基质中的结构和构象动力学。胰岛素成功地用碘乙酰胺和双官能团氮氧自由基试剂 HO-1944 进行了自旋标记。记录室温连续波(cw)EPR 光谱以评估附着的自旋标记的迁移率。使用双电子-电子共振(DEER)和低温 cw-EPR 研究了胰岛素的构象及其在二氧化硅基质中的分布。多孔氧化物基质似乎在胰岛素分子周围形成,其孔径约为几纳米。通过傅里叶变换红外光谱研究的包封胰岛素的二级结构证明,即使在干燥的二氧化硅基质中,胰岛素的结构也具有高度完整性。结果表明,二氧化硅封装可作为一种强大的工具,在制备、储存和释放过程中有效隔离和功能保存生物分子。

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