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Binding Interactions of Hematoporphyrin Monomethyl Ether with Bovine Serum Albumin

机译:血卟啉单甲醚与牛血清白蛋白的结合相互作用

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Hematoporphyrin monomethyl ether (HMME) that is the second generation photosensitizers is a new and promising porphyrin related photosensitizer for photodynamic therapy and diagnosis in certain tumor. The binding of HMME to bovine serum albumin (BSA) in aqueous solution was studied using fluorescence spectra and absorption spectra. It was shown that HMME has a powerful ability to quench the BSA fluorescence by a non-radiative energy transfer mechanism. The binding constants, Kq, at 303K and 310K were obtained by fluorescence quenching method and the values were 3.1987??1012 L mol-1, 3.7156??1012 L mol-1, respectively. The fluorescence quenching mechanism of BSA by HMME is a dynamic quenching procedure . The critical transfer distance R0 were calculated (R0=2.602nm) based on the theory of F??ster spectroscopy energy transfer. The standard enthalpy change (??H?°)and the standard entropy change (??S?°) were calculated, which indicated that hydrophobic forces played major role in the interaction of HMME and BSA. The effect of HMME on the conformation of BSA was analyzed by means of synchronous fluorescence spectroscopy.
机译:血卟啉单甲基醚(HMME)是第二代光敏剂是一种新的和有前途的卟啉相关光敏剂,用于在某些肿瘤中的光动力治疗和诊断。使用荧光光谱和吸收光谱研究HMME在水溶液中的血清白蛋白(BSA)的结合。结果表明,HMME具有通过非辐射能量转移机构终止BSA荧光的强大能力。通过荧光猝灭方法获得结合常数,KQ,303K和310K,并且该值为3.1987 ?? 10 12℃ -1-sup>,3.7156 ?? 10 12 l mol -1 。 HMME的BSA的荧光猝灭机理是动态猝灭程序。基于F ?? STER光谱能量转移理论计算(R 0 = 2.602nm)的临界传递距离R = 2.602nm。计算标准焓变(α)和标准熵变化(Δθ),表明疏水力在HMME和BSA的相互作用中发挥了重要作用。通过同步荧光光谱分析HMME对BSA构象的影响。

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