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Protein-mediated autoreduction of gold salts to gold nanoparticles

机译:蛋白质介导的金盐自动还原为金纳米颗粒

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Here we report for the first time that proteins can function as unique reducing agents to produce gold nanoparticles from gold salts. We demonstrate that three different proteins, namely, bovine serum albumin (BSA), Rituximab (RIT—an anti-CD20 antibody) and Cetuximab (C225—anti-EGFR antibody), reduce gold salts to gold nanoparticles (GNP). Interestingly, among all the three proteins tested, only BSA can reduce gold salts to gold nanotriangles (GNT). BSA-induced formation of GNT can be controlled by carefully selecting the reaction condition. Heating or using excess of ascorbic acid (AA) as additional reducing agent shifts the reaction towards the formation of GNP with flower-like morphology, whereas slowing down the reaction either by cooling or by adding small amount of AA directs the synthesis towards GNT formation. GNT is formed only at pH 3; higher pHs (pH 7 and pH 10) did not produce any nanoparticles, suggesting the involvement of specific protein conformation in GNT formation. The nanomaterials formed by this method were characterized using UV–visible (UV–vis) spectroscopy and transmission electron microscopy (TEM). This is an important finding that will have uses in various nanotechnological applications, particularly in the green synthesis of novel nanomaterials based on protein structure.
机译:在这里,我们首次报道蛋白质可以作为独特的还原剂,由金盐生产金纳米颗粒。我们证明了三种不同的蛋白质,即牛血清白蛋白(BSA),利妥昔单抗(RIT-一种抗CD20抗体)和西妥昔单抗(C225-抗EGFR抗体)将金盐还原成金纳米粒子(GNP)。有趣的是,在所有测试的三种蛋白质中,只有BSA才能将金盐还原为金纳米三角形(GNT)。可以通过仔细选择反应条件来控制BSA诱导的GNT的形成。加热或使用过量的抗坏血酸(AA)作为额外的还原剂会使反应向具有花样形态的GNP的方向转移,而通过冷却或添加少量AA来减慢反应的速度会使合成朝GNT的方向发展。 GNT仅在pH 3时形成;较高的pH值(pH 7和pH 10)不会产生任何纳米粒子,表明GNT形成中涉及特定的蛋白质构象。通过这种方法形成的纳米材料使用紫外-可见(UV-vis)光谱和透射电子显微镜(TEM)进行表征。这是一个重要发现,将在各种纳米技术应用中使用,特别是在基于蛋白质结构的新型纳米材料的绿色合成中。

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