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用于通过电解消融疗法诱导局部肿瘤pH变化的电场响应性金纳米天线

Electric Field-Responsive Gold Nanoantennas for the Induction of a Locoregional Tumor pH Change Using Electrolytic Ablation Therapy.

作者信息

Joe Ara, Manivasagan Panchanathan, Park Jong Kook, Han Hyo-Won, Seo Sun-Hwa, Thambi Thavasyappan, Giang Phan Vu Hoang, Kang Soon Ah, Conde João, Jang Eue-Soon

机构信息

Department of Applied Chemistry, Kumoh National Institute of Technology, Daehak-ro 61, Gumi, Gyeongbuk 39177, Republic of Korea.

Department of Convergence Technology, Graduate School of Venture, Hoseo University, Seoul 06724, Republic of Korea.

出版信息

ACS Nano. 2024 Jul 8;18(30):19581-96. doi: 10.1021/acsnano.4c03610.

Abstract

Electrolytic ablation (EA) is a burgeoning treatment for solid tumors, in which electrical energy catalyzes a chemical reaction to generate reactive species that can eradicate cancer cells. However, the application of this technique has been constrained owing to the limited spatial effectiveness and complexity of the electrode designs. Therefore, the incorporation of nanotechnology into EA is anticipated to be a significant improvement. Herein, we present a therapeutic approach based on difructose dianhydride IV-conjugated polyethylenimine-polyethylene glycol-modified gold nanorods as electric nanoantennas and nanoelectrocatalysts for EA. We demonstrate that square-wave direct current (DC) fields trigger a reaction between water molecules and chloride ions on the gold nanorod surface, generating electrolytic products including hydrogen, oxygen, and chlorine gases near the electrodes, changing the pH, and inducing cell death. These electric nanoantennas showed significant efficacy in treating colorectal cancer both in vitro and in vivo after DC treatment. These findings clearly indicate that gold nanoantennas enhance the effectiveness of EA by creating a localized electric field and catalyzing electrolytic reactions for the induction of locoregional pH changes within the tumor. By overcoming the limitations of traditional EA and offering an enhanced level of tumor specificity and control, this nanotechnology-integrated approach advances further innovations in cancer therapies.

摘要

电解消融(EA)是一种新兴的实体肿瘤治疗方法,其中电能催化化学反应以产生活性物质,从而根除癌细胞。然而,由于空间有效性有限以及电极设计的复杂性,该技术的应用受到了限制。因此,将纳米技术与EA相结合有望带来显著的改进。在此,我们提出了一种基于二果糖二酐IV共轭聚乙烯亚胺-聚乙二醇修饰的金纳米棒作为电纳米天线和EA纳米电催化剂的治疗方法。我们证明,方波直流(DC)场触发金纳米棒表面水分子与氯离子之间的反应,在电极附近产生包括氢气、氧气和氯气在内的电解产物,改变pH值并诱导细胞死亡。这些电纳米天线在直流电处理后,在体外和体内治疗结直肠癌方面均显示出显著疗效。这些发现清楚地表明,金纳米天线通过产生局部电场和催化电解反应来诱导肿瘤内局部pH值变化,从而提高了EA的有效性。通过克服传统EA的局限性并提供更高水平的肿瘤特异性和控制能力,这种纳米技术集成方法推动了癌症治疗的进一步创新。

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