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用于一氧化碳辅助光热-热力学协同癌症治疗的近红外二区光激活金纳米胶囊

NIR-II Light-Activated Gold Nanocapsules for CO-Assisted Photothermal-Thermodynamic Synergistic Cancer Therapy.

作者信息

Tang Mengcheng, Pan Lingfeng, Deng Hairui, Li Xianan, Yang Weili, Ge Jian, Zhang Han, Li Yao, Zhao Ruibo, Wang Shibo, Kong Xiangdong

机构信息

Institute of Smart Biomaterial Materials, School of Materials Science and Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, P. R. China.

Zhejiang-Mauritius Joint Research Center for Biomaterials and Tissue Engineering, Zhejiang Sci-Tech University, Hangzhou 310018, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2025 May 7;17(18):26296-26309. doi: 10.1021/acsami.5c00919. Epub 2025 Apr 24.

Abstract

Photothermal therapy (PTT) based on a second near-infrared (NIR-II, 1000-1700 nm) light source holds great promise in the field of tumor treatment. However, hyperthermia-induced heat shock protein (HSP) expression and limited therapeutic efficacy remain the major challenges for PTT. Herein, a NIR-II laser-responsive nanocapsule PC/AC@GR@HA (abbreviated as P/A@G@H) was designed for carbon oxide (CO)-assisted tumor PTT combined with thermodynamic therapy (TDT). P/A@G@H was constructed by loading the CO storage polymer mPEG(CO) (PC) along with the free radical initiator 4,4'-azobis(4-cyanovaleric acid) (AC) into a gold hollow nanorod (GR), followed by the surface coating of hyaluronic acid (HA). After accumulating in tumor tissue through the active targeting of HA, P/A@G@H can quickly cause local hyperthermia upon 1064 nm laser irradiation and lead to cell damage by GR-mediated PTT. Moreover, the loaded PC can react with in situ HO to produce CO, which inhibits the PTT-induced HSP90 expression. This can effectively weaken the heat resistance of tumor cells and enhance the PTT effect. Additionally, as a thermally decomposable radical initiator, AC can turn to toxic free radicals to ablate tumor cells via TDT under hyperthermia. Our research demonstrates that the synergistic strategy combining CO-assistance and TDT can effectively augment the ultimate therapeutic outcome of PTT, and the integrated nanocapsule P/A@G@H could be a powerful weapon for tumor suppression based on NIR-II light.

摘要

基于近红外二区(NIR-II,1000 - 1700 nm)光源的光热疗法(PTT)在肿瘤治疗领域具有巨大潜力。然而,热疗诱导的热休克蛋白(HSP)表达以及有限的治疗效果仍然是PTT面临的主要挑战。在此,设计了一种近红外二区激光响应纳米胶囊PC/AC@GR@HA(简称为P/A@G@H),用于二氧化碳(CO)辅助的肿瘤PTT并结合热动力学疗法(TDT)。P/A@G@H是通过将CO储存聚合物mPEG(CO)(PC)与自由基引发剂4,4'-偶氮双(4-氰基戊酸)(AC)负载到金空心纳米棒(GR)中,随后在其表面包覆透明质酸(HA)构建而成。通过HA的主动靶向作用在肿瘤组织中蓄积后,P/A@G@H在1064 nm激光照射下可迅速引起局部热疗,并通过GR介导的PTT导致细胞损伤。此外,负载的PC可与原位产生的HO反应生成CO,从而抑制PTT诱导的HSP90表达。这能够有效削弱肿瘤细胞的耐热性并增强PTT效果。此外,作为一种可热分解的自由基引发剂,AC在热疗条件下可转化为有毒自由基,通过TDT消融肿瘤细胞。我们的研究表明,结合CO辅助和TDT的协同策略能够有效提高PTT的最终治疗效果,并且集成纳米胶囊P/A@G@H可能成为基于近红外二区光的强大肿瘤抑制武器。

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