Self-propelled ferroptosis nanoinducer for enhanced cancer therapy

铁蛋白 葡萄糖氧化酶 脂质过氧化 癌细胞 化学 GPX4 生物相容性 毒性 内生 癌症研究 程序性细胞死亡 生物物理学 癌症 细胞生物学 生物化学 谷胱甘肽 细胞凋亡 抗氧化剂 生物 有机化学 遗传学 谷胱甘肽过氧化物酶
作者
Wenxin Xu,Hao Tian,Yanzhen Song,Hanfeng Qin,J. R. Gao,Yichi Chen,Wei‐Chang Huang,Lin Lin,Haixin Tan,Yicheng Ye,Xiaoting Zhang,Daniela A. Wilson,Guang Yang,Fei Peng,Yingfeng Tu
出处
期刊:International journal of extreme manufacturing [IOP Publishing]
卷期号:7 (3): 035501-035501 被引量:9
标识
DOI:10.1088/2631-7990/ada838
摘要

Abstract Ferroptosis is a newly proposed type of programmed cell death, which has been associated with a variety of diseases including tumors. Researchers have thereby presented nanoplatforms to mediate ferroptosis for anti-cancer therapy. However, the development of ferroptosis-based nanotherapeutics is generally hindered by the limited penetration depth in tumors, poor active pharmaceutical ingredient (API) loading content and the systemic toxicity. Herein, self-propelled ferroptosis nanoinducers composed of two endogenous proteins, glucose oxidase and ferritin, are presented to show enhanced tumor inhibition via ferroptosis while maintaining high API and biocompatibility. The accumulation of our proteomotors at tumor regions is facilitated by the active tumor-targeting effect of ferritin. The enhanced diffusion of proteomotors is then actuated by efficiently decomposing glucose into gluconic acid and H 2 O 2 , leading to deeper penetration and enhanced uptake into tumors. Under the synergistic effect of glucose oxidase and ferritin, the equilibrium between reactive oxygen species and GSH is damaged, leading to lipid peroxidation. As a result, by inducing ferroptosis, our self-propelled ferroptosis nanoinducers exhibit enhanced tumor inhibitory effects. This work paves a way for the construction of a biocompatible anticancer platform with enhanced diffusion utilizing only two endogenous proteins, centered around the concept of ferroptosis.
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