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液体纳米颗粒用于纳米催化癌症治疗。

Liquid Nanoparticles for Nanocatalytic Cancer Therapy.

机构信息

Department of Ultrasound, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, 200120, P. R. China.

Department of Emergency, The First Affiliated Hospital of Zhengzhou University, Zhengzhou, Henan, 450052, P. R. China.

出版信息

Adv Mater. 2023 Nov;35(48):e2306469. doi: 10.1002/adma.202306469. Epub 2023 Oct 22.

Abstract

Nanotechnology is revolutionizing cancer therapy, and catalyzes the emerging of ion-involved cancer-therapeutic modality, which unfortunately suffers from undesirable nanocarriers for efficient intracellular ion delivery. To radically extricate from this critical issue, the glutathione (GSH)-responsive organosilica network is employed to lock the liquid drops at the nanoscale via a general bottom-up strategy to achieve the systemic delivery of "ion drugs". In this work, a sulfate radical generation donor (Na S O ), as a paradigm "ion drug", is entrapped into this liquid nanoparticle for efficiently delivering to the tumor region. After further surface engineering with pH-responsive tannic acid-Fe framework, these liquid nanoparticles achieve tumor-microenvironmental pH/GSH-dual responsive ion release (Fe /Na /S O ) after reaching the tumor sites, where the Fe further triggers S O to generate toxic •SO and •OH, effectively executing cancer cell ferroptosis (Fe , reactive oxygen species-ROS) and pyroptosis (Na , ROS). Such a tumor-responsive/specific liquid nanoplatform is highly instructive for further ion-mediated nanomedicine and disease treatment.

摘要

纳米技术正在彻底改变癌症治疗,并催生出涉及离子的癌症治疗新方式,但这种新方式很遗憾因为缺乏有效的细胞内离子递药载体而受到阻碍。为了从根本上解决这个关键问题,我们采用谷胱甘肽(GSH)响应性有机硅网络,通过通用的自下而上策略将液滴锁定在纳米尺度内,从而实现“离子药物”的系统递药。在这项工作中,一种硫酸盐自由基生成供体(Na2S2O8)作为范例“离子药物”被包埋在这种液体纳米颗粒中,以有效地递送到肿瘤区域。经过进一步用 pH 响应性单宁酸-铁框架进行表面工程处理,这些液体纳米颗粒在到达肿瘤部位后可以实现肿瘤微环境 pH/GSH 双重响应的离子释放(Fe2+/Na+/S2O82-),其中 Fe2+进一步触发 S2O82-生成有毒的•SO4-和•OH,有效地执行癌细胞铁死亡(Fe2+,活性氧物种-ROS)和细胞焦亡(Na+,ROS)。这种肿瘤响应性/特异性液体纳米平台为进一步的离子介导的纳米医学和疾病治疗提供了重要的指导。

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