含砷复合物的膜掩蔽生物仿生纳米平台,用于协同强化肝癌治疗。

Shu Wang, Yupei Su, Jiayang Li, Tianyi Wang, Hao Pan, Weisan Pan
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引用次数: 0

摘要

目的:砒霜通过多种途径具有良好的抗晚期肝癌作用,但其严重的全身毒性迫使人们需要一种安全有效的给药策略:方法:基于聚多巴胺(PDA)螯合金属离子的特性,将砷固定在有机载体上,成功构建了M1样巨噬细胞膜(MM)-锰砷复合物介孔聚多巴胺(MnAsOx@MP@M)纳米平台。在细胞水平评估了 MnAsOx@MP@M 的肿瘤抑制和肿瘤定位效果,并在 Hepa1-6 肿瘤小鼠模型中评估了其体内抗肝癌效果:结果:该纳米平台通过MM的天然归巢特性靶向肿瘤部位,在酸性环境中完全降解并释放药物杀死肿瘤细胞,同时在促进肿瘤相关巨噬细胞(TAMs)再极化方面发挥免疫调节作用:MnAsOx@MP@M 通过纳米技术和免疫疗法协同增强了肝癌的靶向治疗效果,有望成为临床肿瘤学领域安全、多功能的治疗平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Membrane-camouflaged biomimetic nanoplatform with arsenic complex for synergistic reinforcement of liver cancer therapy.

Aim: Arsenic has excellent anti-advanced liver cancer effects through a variety of pathways, but its severe systemic toxicity forces the need for a safe and effective delivery strategy.Methods: Based on the chelating metal ion properties of polydopamine (PDA), arsenic was immobilized on an organic carrier, and a M1-like macrophage cell membrane (MM)-camouflaged manganese-arsenic complex mesoporous polydopamine (MnAsOx@MP@M) nanoplatform was successfully constructed. MnAsOx@MP@M was evaluated at the cellular level for tumor inhibition and tumor localization, and in vivo for its anti-liver cancer effect in a Hepa1-6 tumor-bearing mouse model.Results: The nanoplatform targeted the tumor site through the natural homing property of MM, completely degraded and released drugs to kill tumor cells in an acidic environment, while playing an immunomodulatory role in promoting tumor-associated macrophages (TAMs) repolarization.Conclusion: MnAsOx@MP@M has synergistically enhanced the targeted therapeutics against liver cancer via nanotechnology and immunotherapy, and it is expected to become a safe and multifunctional treatment platform in clinical oncology.

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