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人类乳腺肿瘤的代谢分层揭示了具有临床和治疗相关性的亚型。

Metabolic stratification of human breast tumors reveal subtypes of clinical and therapeutic relevance.

作者信息

Iqbal Mohammad A, Siddiqui Shumaila, Smith Kirk, Singh Prithvi, Kumar Bhupender, Chouaib Salem, Chandrasekaran Sriram

机构信息

Thumbay Research Institute for Precision Medicine, Gulf Medical University, Ajman, United Arab Emirates.

College of Medicine, Gulf Medical University, Ajman, United Arab Emirates.

出版信息

iScience. 2023 Sep 26;26(10):108059. doi: 10.1016/j.isci.2023.108059. eCollection 2023 Oct 20.

Abstract

Extensive metabolic heterogeneity in breast cancers has limited the deployment of metabolic therapies. To enable patient stratification, we studied the metabolic landscape in breast cancers (∼3000 patients combined) and identified three subtypes with increasing degrees of metabolic deregulation. Subtype M1 was found to be dependent on bile-acid biosynthesis, whereas M2 showed reliance on methionine pathway, and M3 engaged fatty-acid, nucleotide, and glucose metabolism. The extent of metabolic alterations correlated strongly with tumor aggressiveness and patient outcome. This pattern was reproducible in independent datasets and using tumor metabolite data. Using machine-learning, we identified robust and generalizable signatures of metabolic subtypes in tumors and cell lines. Experimental inhibition of metabolic pathways in cell lines representing metabolic subtypes revealed subtype-specific sensitivity, therapeutically relevant drugs, and promising combination therapies. Taken together, metabolic stratification of breast cancers can thus aid in predicting patient outcome and designing precision therapies.

摘要

乳腺癌广泛的代谢异质性限制了代谢疗法的应用。为了实现患者分层,我们研究了乳腺癌(共约3000例患者)的代谢格局,并确定了三种代谢失调程度逐渐增加的亚型。发现M1亚型依赖胆汁酸生物合成,而M2亚型依赖蛋氨酸途径,M3亚型涉及脂肪酸、核苷酸和葡萄糖代谢。代谢改变的程度与肿瘤侵袭性和患者预后密切相关。这种模式在独立数据集中以及使用肿瘤代谢物数据时均可重现。通过机器学习,我们在肿瘤和细胞系中确定了代谢亚型的强大且可推广的特征。对代表代谢亚型的细胞系中代谢途径的实验性抑制揭示了亚型特异性敏感性、具有治疗相关性的药物以及有前景的联合疗法。综上所述,乳腺癌的代谢分层有助于预测患者预后并设计精准疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5e7/10579441/04875c07259c/fx1.jpg

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