光谱学与光谱分析 |
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Spectrometry Study on the Interaction of Magdala Red and Bovine Serum Albumin |
SHI Yan, YE Fan-di, ZHENG Wei-wan |
Key Laboratory of Food Science of MOE, Nanchang University, Nanchang 330047, China |
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Abstract In the present paper,the interaction of Magdala red and bovine serum albumin(BSA) was studied by UV-absorption and fluorescence spectrometry. The results of UV-absorption spectrometry show that the way of the interaction of Magdala red and BSA should obey the Scatchard Model. In other words, Magdala should be combined to some certain regions of BSA. Meanwhile, taking advantage of fluorescence quenching, the reaction mechanism of Magdala with BSA was explored. Protein molecule conformation change is discussed by synchronous fluorescence spectrometry.
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Received: 2004-12-10
Accepted: 2005-03-28
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Corresponding Authors:
SHI Yan
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Cite this article: |
SHI Yan,YE Fan-di,ZHENG Wei-wan. Spectrometry Study on the Interaction of Magdala Red and Bovine Serum Albumin [J]. SPECTROSCOPY AND SPECTRAL ANALYSIS, 2006, 26(07): 1314-1317.
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https://www.gpxygpfx.com/EN/Y2006/V26/I07/1314 |
[1] Kragh-Hansen U. Pharmacological, Review, 1981, 33(1): 17. [2] LUO Zong-ming, ZHANG Kun, CUI Ying-de, et al(罗宗铭, 张 焜,崔英德, 等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2001,21(2):251. [3] ZHU Keng, TONG Shen-yang(朱 铿,童沈阳). Acta Chimica Sinica(化学学报), 1996, 54:620. [4] CHEN Guo-zhen, HUANG Xian-zhi, ZHENG Zhu-zi, et al(陈国珍,黄贤智,郑朱梓, 等). Fluorescence Analysis(荧光分析法). Beijing: Science Press(北京: 科学出版社), 1990. [5] YANG Man-man, YANG Pin, ZHANG Li-wei(杨曼曼,杨 频,张立伟). Chinese Science Bulletin(科学通报), 1994,39(1): 31. [6] XIAO Hou-rong,SHENG Liang-quan, SHI Chun-hua, et al(肖厚荣,盛良全,施春华, 等). Spectroscopy and Spectral Analysis(光谱学与光谱分析), 2004,24(1):78.
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