转移性乳腺癌
乳腺癌
生物
原发性肿瘤
癌症研究
癌症
瓦博格效应
转移
癌细胞
重编程
生物信息学
细胞
生物化学
遗传学
作者
Shan Liu,Xingda Zhang,Wenzheng Wang,Xue Li,Xue Sun,Yuqian Zhao,Sheng Wang,Yingpu Li,Fangjie Hu,Ren He
标识
DOI:10.1186/s12943-024-02165-x
摘要
Metabolic alterations, a hallmark of cancer, enable tumor cells to adapt to their environment by modulating glucose, lipid, and amino acid metabolism, which fuels rapid growth and contributes to treatment resistance. In primary breast cancer, metabolic shifts such as the Warburg effect and enhanced lipid synthesis are closely linked to chemotherapy failure. Similarly, metastatic lesions often display distinct metabolic profiles that not only sustain tumor growth but also confer resistance to targeted therapies and immunotherapies. The review emphasizes two major aspects: the mechanisms driving metabolic resistance in both primary and metastatic breast cancer, and how the unique metabolic environments in metastatic sites further complicate treatment. By targeting distinct metabolic vulnerabilities at both the primary and metastatic stages, new strategies could improve the efficacy of existing therapies and provide better outcomes for breast cancer patients.
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