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Characterization and Molecular Mechanism of Peptide-Conjugated Gold Nanoparticle Inhibiting p53-HDM2 Interaction in Retinoblastoma

机译:肽共轭金纳米粒子抑制视网膜母细胞瘤中p53-HDM2相互作用的表征和分子机理

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摘要

Inhibition of the interaction between p53 and HDM2 is an effective therapeutic strategy in cancers that harbor a wild-type p53 protein such as retinoblastoma (RB). Nanoparticle-based delivery of therapeutic molecules has been shown to be advantageous in localized delivery, including to the eye, by overcoming ocular barriers. In this study, we utilized biocompatible gold nanoparticles (GNPs) to deliver anti-HDM2 peptide to RB cells. Characterization studies suggested that GNP-HDM2 was stable in biologically relevant solvents and had optimal cellular internalization capability, the primary requirement of any therapeutic molecule. GNP-HDM2 treatment in RB cells in vitro suggested that they function by arresting RB cells at the G2M phase of the cell cycle and initiating apoptosis. Analysis of molecular changes in GNP-HDM2-treated cells by qRT-PCR and western blotting revealed that the p53 protein was upregulated; however, transactivation of its downstream targets was minimal, except for the PUMA-BCl2 and Bax axis. Global gene expression and in silico bioinformatic analysis of GNP-HDM2-treated cells suggested that upregulation of p53 might presumptively mediate apoptosis through the induction of p53-inducible miRNAs.
机译:在具有野生型p53蛋白(例如成视网膜细胞瘤(RB))的癌症中,抑制p53和HDM2之间的相互作用是一种有效的治疗策略。通过克服眼屏障,已经证明基于纳米颗粒的治疗分子的递送在局部递送中包括向眼睛的递送中是有利的。在这项研究中,我们利用生物相容性金纳米颗粒(GNP)将抗HDM2肽传递到RB细胞。表征研究表明,GNP-HDM2在生物学相关的溶剂中稳定,并具有最佳的细胞内在化能力,这是任何治疗性分子的主要要求。 GNP-HDM2在RB细胞中的体外治疗表明它们通过在细胞周期的G2M期阻滞RB细胞并启动凋亡来发挥作用。通过qRT-PCR和western印迹分析GNP-HDM2处理的细胞的分子变化,发现p53蛋白被上调。然而,除了PUMA-BCl2和Bax轴外,其下游靶标的反式激活作用极小。 GNP-HDM2处理的细胞的整体基因表达和计算机生物信息学分析表明,p53的上调可能通过诱导p53诱导的miRNA推测介导凋亡。

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