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多前药纳米医学用于化学激发触发的自我增强癌症化疗和气体治疗。

Polyprodrug nanomedicine for chemiexcitation-triggered self-augmented cancer chemotherapy and gas therapy.

机构信息

School of Life Science and Technology, Harbin Institute of Technology, Harbin, Heilongjiang, 150080, PR China.

School of Life Science and Technology, Harbin Institute of Technology, Harbin, Heilongjiang, 150080, PR China.

出版信息

Biomaterials. 2024 Sep;309:122606. doi: 10.1016/j.biomaterials.2024.122606. Epub 2024 May 9.

DOI:10.1016/j.biomaterials.2024.122606
PMID:38776593
Abstract

Carbon monoxide (CO) has emerged as a potential antitumor agent by inducing the dysfunction of mitochondria and the apoptosis of cancer cells. However, it remains challenging to deliver appropriate amount of CO into tumor to ensure efficient tumor growth suppression with minimum side effects. Herein we developed a CO prodrug-loaded nanomedicine based on the self-assembly of camptothecin (CPT) polyprodrug amphiphiles. The polyprodrug nanoparticles readily dissociate upon exposure to endogenous HO in the tumor, resulting in rapid release of CPT and generation of high-energy intermediate dioxetanedione. The latter can transfer the energy to neighboring CO prodrugs to activate CO production by chemiexcitation, while CPT promotes the generation of HO in tumors, which in turn facilitates cascade CPT and CO release. As a result, the polyprodrug nanoparticles display remarkable tumor suppression in both subcutaneous and orthotopic breast tumor-bearing mice owing to the self-augmented CPT release and CO generation. In addition, no obvious systemic toxicity was observed in mice treated with the metal-free CO prodrug-loaded nanomedicine, suggesting the good biocompatibility of the polyprodrug nanoparticles. Our work provides new insights into the design and construction of polyprodrug nanomedicines for synergistic chemo/gas therapy.

摘要

一氧化碳 (CO) 通过诱导线粒体功能障碍和癌细胞凋亡,已成为一种有潜力的抗肿瘤药物。然而,将适量的 CO 递送到肿瘤部位以确保高效的肿瘤生长抑制和最小的副作用仍然具有挑战性。在此,我们开发了一种基于喜树碱 (CPT) 多前药两亲体自组装的 CO 前药负载纳米药物。该多前药纳米颗粒在暴露于肿瘤内源性 HO 时容易解离,导致 CPT 的快速释放和高能中间体二噁烷二酮的生成。后者可以将能量传递给邻近的 CO 前药,通过化学激发激活 CO 的产生,而 CPT 促进肿瘤中 HO 的产生,进而促进级联 CPT 和 CO 的释放。因此,由于自增强的 CPT 释放和 CO 的产生,多前药纳米颗粒在皮下和原位乳腺癌荷瘤小鼠中表现出显著的肿瘤抑制作用。此外,用不含金属的 CO 前药负载纳米药物治疗的小鼠未观察到明显的全身毒性,表明多前药纳米颗粒具有良好的生物相容性。我们的工作为协同化学/气体治疗的多前药纳米药物的设计和构建提供了新的思路。

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