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适应细胞聚集、缺氧和肥胖基质细胞合并的代谢变化作为卵巢转移瘤存活的潜在检测指标。

Adaptation of metabolism to multicellular aggregation, hypoxia and obese stromal cell incorporation as potential measure of survival of ovarian metastases.

机构信息

Department of Human Nutrition, Foods and Exercise, United States.

Translational Biology, Medicine, and Health, Virginia Tech, Blacksburg, VA, United States.

出版信息

Exp Cell Res. 2021 Feb 1;399(1):112397. doi: 10.1016/j.yexcr.2020.112397. Epub 2020 Dec 15.

Abstract

Ovarian metastases exfoliate from the primary tumor and it is thought that aggregation supports their survival in the peritoneal cavity during dissemination but the underlying mechanisms are not clearly identified. We have previously shown that ovarian cancer cells acquire an increasingly glycolytic and metabolic flexible phenotype during progression. In the present study, we investigated how hypoxia, aggregation, and the incorporation of the obese stromal vascular fraction (SVF) affect cellular metabolism and the response to common anti-cancer and anti-diabetic drugs. Our results show a reduction of glucose uptake, lactate secretion, cellular respiration and ATP synthesis in response to hypoxia and aggregation, suggesting that the observed reduced proliferation of cells aggregated into spheroids is the result of a down-regulation of respiration. Recruitment of SVF to spheroids increased the spheroids invasive capacity but reduced respiration only in the most aggressive cells. Further, aggregation and hypoxia reduced the response to the metabolic drugs AICAR and metformin, and the chemotherapeutic agents cisplatin and paclitaxel. Our results suggest that the adaptation of cellular metabolism may contribute to enhanced survival under non-permissive conditions, and that these metabolic alterations may provide targets for future interventions that aim to enhance the survival of women with metastatic ovarian cancer.

摘要

卵巢转移瘤从原发肿瘤脱落,人们认为聚集有助于它们在播散过程中在腹腔内存活,但潜在的机制尚不清楚。我们之前已经表明,卵巢癌细胞在进展过程中获得了越来越明显的糖酵解和代谢灵活性表型。在本研究中,我们研究了缺氧、聚集以及肥胖基质血管部分(SVF)的掺入如何影响细胞代谢以及对常见抗癌和抗糖尿病药物的反应。我们的结果表明,缺氧和聚集会导致葡萄糖摄取、乳酸分泌、细胞呼吸和 ATP 合成减少,这表明聚集形成球体的细胞观察到的增殖减少是呼吸下调的结果。SVF 向球体的募集增加了球体的侵袭能力,但仅在最具侵袭性的细胞中降低了呼吸作用。此外,聚集和缺氧降低了对代谢药物 AICAR 和二甲双胍以及化疗药物顺铂和紫杉醇的反应。我们的结果表明,细胞代谢的适应可能有助于在非许可条件下增强生存能力,并且这些代谢改变可能为旨在提高转移性卵巢癌女性生存能力的未来干预提供目标。

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