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Understanding the mechanism of replacement of citrate from the surface of gold nanoparticles by amino acids: a theoretical and experimental investigation and their biological application

机译:了解氨基酸置换金纳米颗粒表面柠檬酸盐的机理:理论和实验研究及其生物学应用

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The present study explores the physicochemical aspects needed for the appropriate in vitro synthesis and surface modification behavior of gold nanoparticles (AuNPs) in the presence of amino acids (AA). AAs replace citrate (Cit) from surface of citrate-coated AuNPs (Cit-AuNPs) depending upon their structural variations at different pH values. This behavior is further supported by molecular simulation studies, in which we have measured the effectiveness of different AAs in replacing the Cit from the gold (Au) surface. Within the limitations of the approach, the results indicate that cysteine (Cys) is most effective in replacing the Cit, arginine (Arg) is least effective, with glutamic acid (Glu) being intermediate. The UV-vis and FT-IR studies are employed to monitor the simultaneous synthesis and interactions of AA coated AuNPs over a range of pH values from 3.5 to 11. AA coated AuNPs are characterized by XRD and TEM studies. Cysteine coated AuNPs (Cys-AuNPs) show remarkable pH responsive behavior as compared to Glu and Arg coated AuNPs (Glu-AuNPs/Arg-AuNPs). Moreover, all AA coated AuNPs show little hemolysis with Arg-AuNPs having the least hemolytic effect. Thus, AA coated AuNPs are considered to be best vehicle for drug release and other biomedical applications.
机译:本研究探讨了在氨基酸(AA)存在下金纳米颗粒(AuNPs)适当体外合成和表面修饰行为所需的物理化学方面。 AA取代柠檬酸盐包覆的AuNPs(Cit-AuNPs)表面的柠檬酸盐(Cit),具体取决于它们在不同pH值下的结构变化。这种行为得到了分子模拟研究的进一步支持,在分子模拟研究中,我们测量了不同AA替代金(Au)表面Cit的有效性。在该方法的局限性内,结果表明半胱氨酸(Cys)替代Cit最有效,精氨酸(Arg)最低,谷氨酸(Glu)为中间。 UV-vis和FT-IR研究用于监测从3.5到11的pH值范围内,AA包覆的AuNP的同时合成和相互作用。XRD和TEM研究表征了AA包覆的AuNP。与Glu和Arg包被的AuNPs(Glu-AuNPs / Arg-AuNPs)相比,半胱氨酸包被的AuNPs(Cys-AuNPs)显示出显着的pH响应行为。此外,所有AA包被的AuNPs溶血作用最少的Arg-AuNPs溶血很少。因此,AA包被的AuNP被认为是药物释放和其他生物医学应用的最佳载体。

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