代谢组学
谷胱甘肽
卵巢癌
癌症研究
癌细胞
阿霉素
细胞培养
生物
抗药性
细胞毒性T细胞
药理学
细胞生长
药品
细胞
癌症
化学
化疗
生物信息学
生物化学
体外
酶
遗传学
作者
Pedro Alarcón,Andy J. Pérez,Karin Toledo-Oñate,Héctor Contreras,Valeska Ormazábal,Estefanía Nova‐Lamperti,Claudio Aguayo,Carlos Salomón,Felipe Zúñiga
出处
期刊:Life Sciences
[Elsevier BV]
日期:2023-10-10
卷期号:333: 122166-122166
被引量:2
标识
DOI:10.1016/j.lfs.2023.122166
摘要
Ovarian cancer presents a significant challenge due to its high rate of chemoresistance, which complicates the effectiveness of drug-response therapy. This study provides a comprehensive metabolomic analysis of ovarian cancer cell lines OVCAR-3 and SK-OV-3, characterizing their distinct metabolic landscapes. Metabolomics coupled with chemometric analysis enabled us to discriminate between the metabolic profiles of these two cell lines. The OVCAR-3 cells, which are sensitive to doxorubicin (DOX), exhibited a preference for biosynthetic pathways associated with cell proliferation. Conversely, DOX-resistant SK-OV-3 cells favored fatty acid oxidation for energy maintenance. Notably, a marked difference in glutathione (GSH) metabolism was observed between these cell lines. Our investigations further revealed that GSH depletion led to a profound change in drug sensitivity, inducing a shift from a cytostatic to a cytotoxic response. The results derived from this comprehensive metabolomic analysis offer potential targets for novel therapeutic strategies to overcome drug resistance. Our study suggests that targeting the GSH pathway could potentially enhance chemotherapy's efficacy in treating ovarian cancer.
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