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首页> 外文期刊>Journal of innovative optical health sciences >Spectroscopic analysis of the interaction between tetra-(p-sulfoazophenyl-4-aminosulfonyl)-substituted aluminum (III) phthalocyanines and serum albumins
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Spectroscopic analysis of the interaction between tetra-(p-sulfoazophenyl-4-aminosulfonyl)-substituted aluminum (III) phthalocyanines and serum albumins

机译:四-(对-磺基偶氮苯基-4-氨基磺酰基)取代的铝(III)酞菁与血清白蛋白相互作用的光谱分析

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The binding interaction between tetra-(p-sulfoazophenyl-4-aminosulfonyl)-substituted aluminum (III) phthalocyanine (AlPc), and two-serum albumins (bovine serum albumin (BSA) and human serum albumin (HSA)) has been investigated. AlPc could quench the intrinsic fluorescence of BSA and HSA through a static quenching process. The primary and secondary binding sites of AlPc on BSA were domain I and III of BSA. The primary binding site of AlPc on HSA was domain I, and the secondary binding sites of AlPc on HSA were found at domains I and II. Our results suggest that AlPc readily interact with BSA and HSA implying that the amphiphilic substituents AlPc may contribute to their transportation in the blood.
机译:研究了四-(对-磺基偶氮苯基-4-氨基磺酰基)取代的铝(III)酞菁(AlPc)与两个血清白蛋白(牛血清白蛋白(BSA)和人血清白蛋白(HSA))之间的结合相互作用。 AlPc可以通过静态猝灭过程猝灭BSA和HSA的固有荧光。 BSA上AlPc的主要和次要结合位点是BSA的结构域I和III。 HSA上AlPc的主要结合位点是结构域I,HSA上AlPc的次要结合位点位于结构域I和II。我们的结果表明,AlPc容易与BSA和HSA相互作用,这表明两亲性取代基AlPc可能有助于它们在血液中的运输。

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