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整合组学分析揭示,代谢干预联合节拍化疗选择性杀伤癌细胞。

Integrative Omics Analysis Revealed that Metabolic Intervention Combined with Metronomic Chemotherapy Selectively Kills Cancer Cells.

机构信息

Department of Nephrology , Children's Hospital of Nanjing Medical University , Guangzhou Road No. 72 , Nanjing 210008 , China.

出版信息

J Proteome Res. 2019 Jun 7;18(6):2643-2653. doi: 10.1021/acs.jproteome.9b00138. Epub 2019 May 28.

DOI:10.1021/acs.jproteome.9b00138
PMID:31094201
Abstract

Metronomic chemotherapy, a relatively new dosing paradigm for anticancer therapy, is an alternative to traditional chemotherapy that uses maximal tolerated dose (MTD). Although these two dosing regimens both lead to tumor cell death, how cell metabolism is differentially affected during apoptosis remains elusive. Herein, we employed metabolomics to monitor the metabolic profiles of MCF-7 cells in response to the two dosing regimens that mimic MTD and MN treatments using a model chemotherapeutic drug, doxorubicin (Dox), and correlated the changes of metabolic genes examined by PCR array to integratively describe the reprogrammed metabolic patterns. We found glycolysis, amino acid, and nucleotide synthesis-associated metabolic pathways were activated in response to the MN treatment, whereas these pathways were inhibited in a pronounced way in response to the MTD treatment. Direct supplementation of key metabolites and pharmacological modulation of targeted metabolic enzymes can both regulate cell fates. Subsequently, we tested the combined use of MN dosing with targeted metabolic intervention using a normal cell line and found the combined treatment hardly affected its apoptotic rate. Our in vitro findings using MCF-7 and MCF-10A cells thus suggest the promising perspective of combining MN dosing of chemotherapeutic agents with metabolic modulation to selectively kill cancer cells rather than normal cells.

摘要

节拍化疗是一种相对较新的癌症治疗剂量模式,是使用最大耐受剂量 (MTD) 的传统化疗的替代方法。虽然这两种剂量方案都导致肿瘤细胞死亡,但细胞代谢在凋亡过程中如何受到不同影响仍然难以捉摸。在这里,我们采用代谢组学方法来监测 MCF-7 细胞对模拟 MTD 和 MN 治疗的两种剂量方案的代谢谱,使用模型化疗药物阿霉素 (Dox) 进行治疗,并将 PCR 阵列检查的代谢基因变化相关联,以综合描述重编程的代谢模式。我们发现,MN 治疗会激活与糖酵解、氨基酸和核苷酸合成相关的代谢途径,而 MTD 治疗则明显抑制这些途径。关键代谢物的直接补充和靶向代谢酶的药理学调节均可调节细胞命运。随后,我们使用正常细胞系测试了 MN 剂量与靶向代谢干预的联合使用,发现联合治疗对其凋亡率几乎没有影响。因此,我们使用 MCF-7 和 MCF-10A 细胞的体外研究结果表明,将化疗药物的 MN 剂量与代谢调节相结合以选择性杀死癌细胞而不是正常细胞具有广阔的前景。

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Functional Metabolomics and Chemoproteomics Approaches Reveal Novel Metabolic Targets for Anticancer Therapy.功能代谢组学和化学蛋白质组学方法揭示了癌症治疗的新代谢靶标。
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A diet-microbial metabolism feedforward loop modulates intestinal stem cell renewal in the stressed gut.
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A novel method to detect intracellular metabolite alterations in MCF-7 cells by doxorubicin induced cell death.一种通过阿霉素诱导的细胞死亡来检测 MCF-7 细胞内代谢物变化的新方法。
Metabolomics. 2021 Jan 3;17(1):3. doi: 10.1007/s11306-020-01755-2.