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负载氯离子转运体的铂铜合金纳米颗粒促进电驱动肿瘤抑制

Platinum-copper alloy nanoparticles armored with chloride ion transporter to promote electro-driven tumor inhibition.

作者信息

Chen Tong, Han Gaorong, Li Xiang

机构信息

State Key Laboratory of Silicon Materials, School of Materials Science and Engineering, Zhejiang University, Hangzhou, Zhejiang, 310027, China.

ZJU-Hangzhou Global Scientific and Technological Innovation Centre, Zhejiang University, Hangzhou, 311200, PR China.

出版信息

Bioact Mater. 2021 Oct 13;12:143-152. doi: 10.1016/j.bioactmat.2021.10.012. eCollection 2022 Jun.

Abstract

The induction of oxidative species, driven by oscillating electric field (E), has recently emerged as an effective approach for tumor inhibition, so-called electrodynamic therapy (EDT). While it offers a series of advantages attracting considerable attention, the fundamental mechanism and improvement strategies for EDT approach are being endeavored extensively with the aid of new material explorations. An interesting phenomenon observed in early studies is that the on-site concentration of chloride ion is highly favored for the induction of oxidative species and the efficacy of tumor inhibition. Following this discovery ignored previously, here for the first time, fine Pt/Cu alloy nanoparticles (PtCu NPs) are integrated with chloride ion transporter (CIT) for EDT-based combinational therapy. In this system, while PtCu NPs induce oxidative species under an electric field, it also effectively transforms endogenous HO into •OH and consumes intracellular glutathione (GSH). More importantly, with the aid of CIT, PtCu-PEG@CIT NPs promote the intracellular concentration of chloride ion (Cl) by transporting extracellular Cl, facilitating the generation of oxidative species considerably. Meanwhile, CIT delivered intracellularly increases lysosomal pH, leading to the disruption of cellular autophagy and weakening the treatment resistance. In consequence, significant tumor inhibition is enabled both and in vivo, due to the combination of unique characteristics offered by PtCu-PEG@CIT.

摘要

由振荡电场(E)驱动的氧化物种诱导最近已成为一种有效的肿瘤抑制方法,即所谓的电动力疗法(EDT)。虽然它具有一系列优势并引起了广泛关注,但借助新材料探索,EDT方法的基本机制和改进策略正在广泛研究中。早期研究中观察到的一个有趣现象是,氯离子的现场浓度非常有利于氧化物种的诱导和肿瘤抑制效果。继此前被忽视的这一发现之后,本文首次将精细的铂/铜合金纳米颗粒(PtCu NPs)与氯离子转运体(CIT)整合用于基于EDT的联合治疗。在该系统中,PtCu NPs在电场作用下诱导氧化物种,它还能有效地将内源性HO转化为•OH并消耗细胞内谷胱甘肽(GSH)。更重要的是,借助CIT,PtCu-PEG@CIT NPs通过转运细胞外Cl促进细胞内氯离子(Cl)的浓度升高,极大地促进了氧化物种的产生。同时,细胞内递送的CIT会提高溶酶体pH值,导致细胞自噬的破坏并削弱治疗抗性。因此,由于PtCu-PEG@CIT所具有的独特特性的结合,在体内外均实现了显著的肿瘤抑制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/750d/8897047/1ea8509fd6b2/ga1.jpg

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