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自组装二元纳米组装体实现闭环谷胱甘肽耗竭增强肿瘤铁死亡。

Self-engineered binary nanoassembly enabling closed-loop glutathione depletion-amplified tumor ferroptosis.

机构信息

Department of Pharmaceutics, Wuya College of Innovation, Shenyang Pharmaceutical University, Shenyang 110016, PR China.

Department of Pharmacy, Women and Children's Hospital of Chongqing Medical University/Chongqing Health Center for Women and Children, Chongqing, 401147, China.

出版信息

Biomater Sci. 2023 Nov 7;11(22):7373-7386. doi: 10.1039/d3bm01153d.

Abstract

Ferroptosis has emerged as a promising target for anticancer treatment, comprising iron-dependent lipid peroxidation and excessive accumulation of reactive oxygen species. Given that glutathione (GSH) overproduced in tumor cells antagonizes the cellular oxidation system, the reduction of GSH production has been extensively explored to induce ferroptosis. However, reducing GSH production alone is insufficient to trigger an intense lipid peroxidation storm. It is highly desirable to achieve systemic GSH depletion through simultaneous production and consumption intervention. Herein, we propose a bidirectional blockage strategy for closed-loop GSH depletion-amplified tumor ferroptosis. Sorafenib (Sor) and gambogic acid (GA) were elaborately fabricated as a self-engineered carrier-free nanoassembly without any nanocarrier materials. The PEGylated dual-drug nanoassembly enables favorable co-delivery and tumor-specific release of Sor and GA. Notably, a closed-loop GSH depletion is observed as a result of a Sor-induced decrease in GSH production and GA-accelerated GSH consumption and . As expected, this uniquely engineered dual-drug nanoassembly demonstrates vigorous antitumor activity in 4T1 breast tumor-bearing mice. This study presents a novel nanotherapeutic modality for ferroptosis-driven cancer treatment.

摘要

铁死亡已成为癌症治疗的一个有前途的靶点,包括铁依赖性脂质过氧化和活性氧的过度积累。鉴于肿瘤细胞中超量产生的谷胱甘肽 (GSH) 拮抗了细胞氧化系统,因此广泛探索了降低 GSH 产生以诱导铁死亡。然而,仅降低 GSH 的产生不足以引发强烈的脂质过氧化风暴。通过同时进行产生和消耗干预来实现系统的 GSH 耗竭是非常理想的。在此,我们提出了一种双向阻断策略,用于闭环 GSH 耗竭增强的肿瘤铁死亡。索拉非尼 (Sor) 和藤黄酸 (GA) 被精心设计为无任何纳米载体材料的自工程无载体纳米组装体。聚乙二醇化的双药物纳米组装体能够实现 Sor 和 GA 的良好共递药和肿瘤特异性释放。值得注意的是,由于 Sor 诱导的 GSH 产生减少和 GA 加速的 GSH 消耗,观察到闭环 GSH 耗竭。不出所料,这种独特设计的双药物纳米组装体在 4T1 乳腺癌荷瘤小鼠中表现出强烈的抗肿瘤活性。本研究为铁死亡驱动的癌症治疗提供了一种新的纳米治疗模式。

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