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机械压缩对人纤维蛋白原热诱导构象稳定性和变性温度的影响。

Mechanical compression affecting the thermal-induced conformational stability and denaturation temperature of human fibrinogen.

作者信息

Lin Shan-Yang, Hsieh Tzu-Feng, Wei Yen-Shan, Li Mei-Jane

机构信息

Biopharmaceutics Laboratory, Department of Medical Research and Education, Taipei Veterans General Hospital, Shih-Pai, Taipei, Taiwan, ROC.

出版信息

Int J Biol Macromol. 2005 Nov 15;37(3):127-33. doi: 10.1016/j.ijbiomac.2005.09.008. Epub 2005 Oct 27.

Abstract

Thermal-induced conformational stability and changes in denaturation temperature of human fibrinogen (FBG) after different mechanical compressions were investigated by a simultaneous Fourier transform infrared microspectroscopy equipped with thermal analyzer (thermal FTIR microscopic system). The confocal Raman microspectroscopy was also applied to determine the thermal reversibility of solid FBG. FBG powder was pressed on one KBr pellet (1 KBr method) or sealed within two KBr pellets (2 KBr method) by different mechanical compressions. The result indicates that there was no marked difference in the thermal behavior for the solid FBG samples prepared by 1 KBr method in the heating process even under different mechanical compression pressures, in which the thermal-induced denaturation temperatures from native to denatured state were maintained constant at 66-67 degrees C. However, the denaturation temperature for the solid FBG samples prepared by 2 KBr method was shifted from 55 to 62 degrees C with the increase of mechanical compression pressure. A good linear correlation was also found between the denaturation temperature and mechanical compression pressure for FBG samples prepared by 2 KBr method. The solid FBG sample, whether prepared by 1 KBr or 2 KBr method, was also found to show the thermal-irreversible property.

摘要

采用配备热分析仪的同步傅里叶变换红外显微光谱仪(热傅里叶变换红外显微系统),研究了不同机械压缩后人纤维蛋白原(FBG)的热诱导构象稳定性和变性温度变化。还应用共焦拉曼显微光谱法测定固体FBG的热可逆性。通过不同的机械压缩,将FBG粉末压在一个溴化钾片上(1KBr法)或密封在两个溴化钾片之间(2KBr法)。结果表明,即使在不同的机械压缩压力下,采用1KBr法制备的固体FBG样品在加热过程中的热行为也没有显著差异,其中从天然态到变性态的热诱导变性温度保持在66 - 67℃恒定。然而,采用2KBr法制备的固体FBG样品的变性温度随着机械压缩压力的增加从55℃移至62℃。对于采用2KBr法制备的FBG样品,变性温度与机械压缩压力之间也发现了良好的线性相关性。还发现,无论采用1KBr法还是2KBr法制备的固体FBG样品均表现出热不可逆特性。

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