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首页> 外文期刊>ACS Omega >Protein Fibril-Templated Biomimetic Synthesis of Highly Fluorescent Gold Nanoclusters and Their Applications in Cysteine Sensing
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Protein Fibril-Templated Biomimetic Synthesis of Highly Fluorescent Gold Nanoclusters and Their Applications in Cysteine Sensing

机译:高荧光金纳米簇的蛋白原纤维模板仿生合成及其在半胱氨酸传感中的应用

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Biomimetic synthesis of multifunctional fluorescent gold nanoclusters (Au NCs) is of great demand because of their ever-increasing applications. In this study, we have used self-assembled bovine serum albumin (BSA) amyloid-like nanofibers as the bioinspired scaffold for the synthesis of Au NCs. The amyloid fibril stabilized gold nanocluster (Fib-Au NC) has been found to have appreciable enhancement of fluorescence emission and a large 25 nm red shift in its emission maxima when compared to its monomeric protein counterpart (BSA-Au NC). The underlying mechanism accountable for the fluorescence behavior and its spectral shift has been thoroughly investigated by a combined use of spectroscopic and microscopic techniques. We have subsequently demonstrated the use of Fib-Au NCs for cysteine (Cys) sensing both in vitro and inside live cells. Additionally, cellular uptake and postpermeation effect of Fib-Au NCs have also been ascertained by detailed flow cytometry analysis, viability assay, and real-time apoptotic gene expression profiling.
机译:多功能荧光金纳米簇(Au NCs)的仿生合成因其不断增长的应用而备受关注。在这项研究中,我们已经使用自组装的牛血清白蛋白(BSA)淀粉样样纳米纤维作为生物启发的支架,用于合成Au NCs。与单体蛋白质对应物(BSA-Au NC)相比,淀粉样蛋白原纤维稳定的金纳米簇(Fib-Au NC)具有明显的荧光发射增强,并且其发射最大值具有25 nm的大红移。通过结合使用光谱技术和显微镜技术已彻底研究了负责荧光行为及其光谱偏移的潜在机制。随后,我们证明了Fib-Au NCs在体外和体内活细胞中都可用于检测半胱氨酸(Cys)。此外,还通过详细的流式细胞术分析,生存力分析和实时凋亡基因表达谱确定了Fib-Au NCs的细胞摄取和渗透后作用。

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