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采用荧光光谱法系统研究牛血清白蛋白与 ZnO 纳米粒子的相互作用。

Systematic investigation on the interaction of bovine serum albumin with ZnO nanoparticles using fluorescence spectroscopy.

机构信息

Department of Physics and National Center for Nanosciences and Nanotechnology, University of Mumbai, Vidyanagari, Santacruz, Mumbai 400 098, India.

出版信息

Colloids Surf B Biointerfaces. 2013 Feb 1;102:257-64. doi: 10.1016/j.colsurfb.2012.08.023. Epub 2012 Aug 25.

Abstract

Zinc oxide (ZnO) nanoparticles with average size of ~7.5nm were synthesized to investigate their interaction with bovine serum albumin (BSA) at different temperatures. Fluorescence quenching, synchronous and polarization spectroscopy along with UV-vis absorption, circular dichroism and resonance light scattering spectroscopy techniques were used to establish the interaction mechanism between ZnO and BSA. The obtained results confirmed that the ZnO nanoparticles (NPs) quench the fluorophore of BSA by forming ground state complex in the solution. The fluorescence quenching data was also used to determine binding sites and binding constants at different temperatures. The calculated thermodynamic parameters (ΔG°, ΔH°, and ΔS°) suggest that the binding process occurs spontaneously by involving hydrogen bond and van der Waals interactions. The synchronous fluorescence spectra reveal that the microenvironment close to both the tyrosine and tryptophan residues of BSA is perturbed and that the hydrophobicity of both the residues is increased in the presence of ZnO NPs. Resonance light scattering, circular dichroism, and fluorescence polarization spectra suggest the formation of BSA-ZnO complex and conformational changes in BSA. The calculated distance between the BSA and ZnO NPs suggests that the energy transfer from excited state of BSA to ZnO NPs occurs with high efficiency.

摘要

合成了平均粒径约为 7.5nm 的氧化锌 (ZnO) 纳米粒子,以研究其在不同温度下与牛血清白蛋白 (BSA) 的相互作用。荧光猝灭、同步和偏振光谱以及紫外-可见吸收、圆二色性和共振光散射光谱技术用于建立 ZnO 与 BSA 之间的相互作用机制。所得结果证实,ZnO 纳米粒子 (NPs) 通过在溶液中形成基态复合物来猝灭 BSA 的荧光团。荧光猝灭数据还用于在不同温度下确定结合位点和结合常数。计算的热力学参数 (ΔG°、ΔH°和 ΔS°) 表明,结合过程是自发进行的,涉及氢键和范德华相互作用。同步荧光光谱表明,BSA 中酪氨酸和色氨酸残基附近的微环境受到干扰,并且在存在 ZnO NPs 的情况下,两种残基的疏水性增加。共振光散射、圆二色性和荧光偏振光谱表明形成了 BSA-ZnO 复合物和 BSA 的构象变化。计算出的 BSA 和 ZnO NPs 之间的距离表明,BSA 从激发态到 ZnO NPs 的能量转移以高效率发生。

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