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精氨酸修饰的 CoWO/FeWO S 型异质结增强对实体瘤的铁死亡作用。

l-Arginine-Modified CoWO /FeWO S-Scheme Heterojunction Enhances Ferroptosis against Solid Tumor.

机构信息

Key Laboratory of Photochemical Biomaterials and Energy Storage Materials, Heilongjiang Province and College of Chemistry and Chemical Engineering, Harbin Normal University, Harbin, 150025, China.

College of Life Science and Agriculture Forestry, Qiqihar University, Qiqihar, 161006, China.

出版信息

Adv Healthc Mater. 2023 Jul;12(18):e2203092. doi: 10.1002/adhm.202203092. Epub 2023 Apr 4.

Abstract

Ferroptosis has recently attracted much attention as an anti-tumor therapy. Evidence suggests that ferroptosis can induce oxidative stress and accumulation of lethal lipid peroxides in cancer cells, leading to cell damage. However, unsuitable pH, H O levels, and high glutathione (GSH) expression in the tumor microenvironment hinder the development of ferroptosis-mediated therapy. In this study, an l-arginine (l-arg)-modified CoWO /FeWO (CFW) S-scheme heterojunction is strategically designed and constructed for ultrasound (US)-triggered sonodynamic- and gas therapy-induced ferroptosis. CFW not only has excellent Fenton-catalytic activity, outstanding GSH consumption capacity, and excellent ability to overcome tumor hypoxia, but its S-scheme heterostructure can also avoid the rapid combination of electron (e) and hole (h ) pairs, thereby enhancing the sonodynamic effects. As a precursor of nitric oxide (NO), l-arg is modified on the surface of CFW (CFW@l-arg) to achieve controlled NO release under US irradiation, thereby enhancing ferroptosis. In addition, poly(allylamine hydrochloride) is further modified on the surface of CFW@l-arg to stabilize l-arg and achieve controllable NO release. Both in vitro and in vivo results demonstrate that such a multifunctional therapeutic nanoplatform can achieve high therapeutic efficacy through sonodynamic and gas therapy-enhanced ferroptosis. This designed oncotherapy nanoplatform provides new inspiration for ferroptosis-mediated therapy.

摘要

铁死亡最近作为一种抗肿瘤疗法引起了广泛关注。有证据表明,铁死亡可以在癌细胞中诱导氧化应激和致命脂质过氧化物的积累,导致细胞损伤。然而,肿瘤微环境中不合适的 pH 值、H2O2 水平和高谷胱甘肽 (GSH) 表达阻碍了铁死亡介导的治疗的发展。在这项研究中,设计并构建了一种 l-精氨酸 (l-arg)-修饰的 CoWO/FeWO (CFW) S 型异质结,用于超声 (US) 触发的声动力学和气体治疗诱导的铁死亡。CFW 不仅具有优异的芬顿催化活性、出色的 GSH 消耗能力和克服肿瘤缺氧的优异能力,而且其 S 型异质结构还可以避免电子 (e) 和空穴 (h) 对的快速复合,从而增强声动力学效应。作为一氧化氮 (NO) 的前体,l-arg 被修饰在 CFW 的表面上(CFW@l-arg),以实现 US 照射下的受控 NO 释放,从而增强铁死亡。此外,进一步在 CFW@l-arg 表面修饰聚(盐酸烯丙胺),以稳定 l-arg 并实现可控的 NO 释放。体外和体内结果均表明,这种多功能治疗纳米平台可以通过声动力学和气体治疗增强的铁死亡实现高治疗效果。这种设计的肿瘤治疗纳米平台为铁死亡介导的治疗提供了新的启示。

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