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Surface Decorated Gold Nanoparticles by Linear and Cyclic Peptides as Molecular Transporters

机译:线性和环状肽作为分子转运蛋白的表面修饰金纳米粒子。

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摘要

Gold nanoparticles (AuNPs) were synthesized in situ in a green and rapid method from the reaction of reducing linear and cyclic peptides containing tryptophan and lysine residues, (KW)5 and cyclic [KW]5, with an aqueous solution of HAuCl4 and were evaluated as cellular nanodrug delivery systems. The cyclic or linear nature of the peptide was found to determine the morphology and size of the formed peptide-AuNPs and their in vitro molecular transporting efficiency. While cyclic [KW]5-AuNPs formed sponge-like agglomerates, linear (KW)5-AuNPs demonstrated ball-shaped structures. A comparative flow cytometry study showed that the cellular uptake of fluorescence-labeled anti-HIV drugs (emtricitabine (FTC) and lamivudine (3TC)) in human Leukemia (CCRF-CEM) cells, and a negatively charged cell-impermeable phosphopeptide (GpYEEI) in human ovarian adecarcinoma (SK-OV-3) cells was significantly higher in the presence of cyclic [KW]5-AuNPs than that of linear (KW)5-AuNPs, parent cyclic [KW]5, and linear (KW)5 peptides. For example, the cellular uptake of F′-GpYEEI was enhanced 12.8-fold by c[KW]5-AuNPs. Confocal microscopy revealed the localization of fluorescence-labeled-3TC in the presence of c[KW]5-AuNPs mostly in nucleus in SK-OV-3 cells after 1 h. On the other hand, l(KW)5-AuNPs delivered fluorescence-labeled-3TC in cytoplasm. These data suggest that non-cell penetrating peptides can be converted to efficient molecular transporters through peptide-capped AuNPs formation.
机译:通过还原含有色氨酸和赖氨酸残基(KW)5和环状[KW] 5的线性和环状肽与HAuCl4水溶液的反应,以绿色快速的方法原位合成了金纳米颗粒(AuNPs),并进行了评估作为细胞纳米药物输送系统。发现肽的环状或线性性质决定了所形成的肽-AuNP的形态和大小以及它们的体外分子运输效率。环状[KW] 5-AuNPs形成海绵状附聚物,而线性(KW)5-AuNPs则呈球形。一项比较流式细胞术研究表明,荧光标记的抗HIV药物(恩曲他滨(FTC)和拉米夫定(3TC))在人白血病(CCRF-CEM)细胞和带负电荷的不可渗透细胞磷酸肽(GpYEEI)中的细胞摄取环状[KW] 5-AuNPs的存在下,人卵巢癌细胞(SK-OV-3)中的细胞明显高于线性(KW)5-AuNPs,亲本环状[KW] 5和线性(KW)5肽。例如,c [KW] 5-AuNPs将F'-GpYEEI的细胞吸收提高了12.8倍。共聚焦显微镜显示在1 h后,在c [KW] 5-AuNPs主要存在于SK-OV-3细胞核中,荧光标记的3TC的定位。另一方面,l(KW)5-AuNPs在细胞质中传递了荧光标记的3TC。这些数据表明,非细胞穿透肽可以通过形成肽基的AuNPs转化为有效的分子转运蛋白。

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