Adrenomedullin induces cisplatin chemoresistance in ovarian cancer through reprogramming of glucose metabolism.

IF 4.7 2区 医学 Q1 MEDICINE, GENERAL & INTERNAL Journal of Translational Internal Medicine Pub Date : 2023-07-01 DOI:10.2478/jtim-2023-0091
Lei Dou, Enting Lu, Dongli Tian, Fangmei Li, Lei Deng, Yi Zhang
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引用次数: 3

Abstract

Background and objectives: The metabolic network of cancer cells has been reprogrammed - relying more on aerobic glycolysis to gain energy, which is an important reason for drug resistance. Expression of adrenomedullin (ADM) in ovarian cancer tissues is related to resistance to platinum-based drugs. In view of this, we intended to investigate the correlation between ADM and glucose metabolism reprogramming of tumor cells to clarify the possible mechanism of ADM-induced ovarian cancer cisplatin resistance through glucose metabolism reprogramming.

Methods: Epithelial ovarian cancer (EOC) cell viability and apoptosis were determined. Different gene expression and protein levels were detected by real-time revere transcription polymerase chain reaction and western blotting. Oxygen consumption rate (OCR) and extracellular acidification rates (ECARs) were measured.

Results: ADM expression was upregulated in cisplatin-resistant EOC cells. ADM attenuated cisplatin-inhibited cell survival and cisplatin-induced apoptosis in sensitive EOC cells; knockdown of ADM enhanced cisplatin chemosensitivity of cisplatin-resistant EOC cells. ADM enhanced glycolysis in cisplatin-sensitive EOC cells; knockdown of ADM significantly inhibited glycolysis in cisplatin-resistant EOC cells. ADM significantly upregulated pyruvate kinase isozyme type M2 (PKM2) protein level, the key enzyme during glycolysis; PKM2 inhibitor significantly abolished the ADM-improved cell survival and ADM-inhibited apoptosis.

Conclusion: ADM promoted proliferation and inhibited apoptosis of ovarian cancer cells through reprogramming of glucose metabolism, so as to promote cisplatin resistance. The study is expected to identify multidrug resistance markers of ovarian cancer and provide a target for the prevention and treatment of ovarian cancer, which is important for clinical translational research.

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肾上腺髓质素通过糖代谢重编程诱导卵巢癌顺铂耐药。
背景与目的:癌细胞的代谢网络发生了重编程,更多地依靠有氧糖酵解获得能量,这是产生耐药的重要原因。肾上腺髓质素(ADM)在卵巢癌组织中的表达与铂类药物耐药有关。鉴于此,我们拟研究ADM与肿瘤细胞糖代谢重编程的相关性,阐明ADM通过糖代谢重编程诱导卵巢癌顺铂耐药的可能机制。方法:测定上皮性卵巢癌(EOC)细胞活力和凋亡情况。实时反转录聚合酶链反应和western blotting检测不同基因表达和蛋白水平。测定氧耗率(OCR)和细胞外酸化率(ECARs)。结果:ADM在顺铂耐药EOC细胞中表达上调。ADM减弱顺铂抑制细胞存活和顺铂诱导的敏感EOC细胞凋亡;敲低ADM可增强顺铂耐药EOC细胞对顺铂的敏感性。ADM增强顺铂敏感EOC细胞糖酵解;敲低ADM显著抑制顺铂耐药EOC细胞糖酵解。ADM显著上调糖酵解关键酶PKM2(丙酮酸激酶同工酶)蛋白水平;PKM2抑制剂显著抑制adm,提高adm细胞存活率,抑制adm细胞凋亡。结论:ADM通过糖代谢重编程促进卵巢癌细胞增殖,抑制细胞凋亡,从而促进顺铂耐药。本研究有望鉴定卵巢癌多药耐药标志物,为卵巢癌的预防和治疗提供靶点,对临床转化研究具有重要意义。
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来源期刊
Journal of Translational Internal Medicine
Journal of Translational Internal Medicine MEDICINE, GENERAL & INTERNAL-
CiteScore
5.50
自引率
8.20%
发文量
41
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