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Ferroptosis-enhanced chemotherapy for triple-negative breast cancer with magnetic composite nanoparticles.

Authors :
Zhang, Jiaxin
Zhou, Kaicheng
Lin, Jingbo
Yao, Xianxian
Ju, Dianwen
Zeng, Xian
Pang, Zhiqing
Yang, Wuli
Source :
Biomaterials. Dec2023, Vol. 303, pN.PAG-N.PAG. 1p.
Publication Year :
2023

Abstract

Triple-negative breast cancer (TNBC) causes great suffering to patients because of its heterogeneity, poor prognosis, and chemotherapy resistance. Ferroptosis is characterized by iron-dependent oxidative damage by accumulating intracellular lipid peroxides to lethal levels, and plays a vital role in the treatment of TNBC based on its intrinsic characteristics. To identify the relationship between chemotherapy resistance and ferroptosis in TNBC, we analyzed the single cell RNA-sequencing public dataset of GSE205551. It was found that the expression of Gpx4 in DOX-resistant TNBC cells was significantly higher than that in DOX-sensitive TNBC cells. Based on this finding, we hypothesize that inducing ferroptosis by inhibiting the expression of Gpx4 can reduce the resistance of TNBC to DOX and enhance the therapeutic effect of chemotherapy on TNBC. Herein, dihydroartemisinin (DHA)-loaded polyglutamic acid-stabilized Fe 3 O 4 magnetic nanoparticles (Fe 3 O 4 -PGA-DHA) was combined with DOX-loaded polyaspartic acid-stabilized Fe 3 O 4 magnetic nanoparticles (Fe 3 O 4 -PASP-DOX) for ferroptosis-enhanced chemotherapy of TNBC. Compared with Fe 3 O 4 -PASP-DOX, Fe 3 O 4 -PGA-DHA + Fe 3 O 4 -PASP-DOX demonstrated significantly stronger cytotoxicity against different TNBC cell lines and achieved significantly more intracellular accumulation of reactive oxygen species and lipid peroxides. Furthermore, transcriptomic analyses demonstrated that Fe 3 O 4 -PASP-DOX-induced apoptosis could be enhanced by Fe 3 O 4 -PGA-DHA-induced ferroptosis and Fe 3 O 4 -PGA-DHA + Fe 3 O 4 -PASP-DOX might trigger ferroptosis in MDA-MB-231 cells by inhibiting the PI3K/AKT/mTOR/GPX4 pathway. Fe 3 O 4 -PGA-DHA + Fe 3 O 4 -PASP-DOX showed superior anti-tumor efficacy on MDA-MB-231 tumor-bearing mice, providing great potential for improving the therapeutic effect of TNBC. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01429612
Volume :
303
Database :
Academic Search Index
Journal :
Biomaterials
Publication Type :
Academic Journal
Accession number :
173945362
Full Text :
https://doi.org/10.1016/j.biomaterials.2023.122395