靶向内源性脂肪酸合成可刺激卵巢癌细胞向脂肪细胞迁移,并促进脂肪酸从脂肪细胞向癌细胞的运输。

IF 4.5 3区 医学 Q1 ONCOLOGY
International journal of oncology Pub Date : 2024-03-01 Epub Date: 2024-01-12 DOI:10.3892/ijo.2024.5612
Thomas W Grunt, Renate Wagner, Alexander Ries, Anna S Berghoff, Matthias Preusser, Michael Grusch, Peter Valent
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引用次数: 0

摘要

尽管肿瘤学取得了重大进展,但每年 108 名女性患者中仍有 1 人死于卵巢癌(OC)。针对这种侵袭性疾病的新型治疗方法的改进将是一大进步。事实证明,卵巢癌细胞的生长高度依赖于脂质。卵巢癌细胞大量存在于腹腔和网膜中,这是卵巢癌扩张的主要部位。因此,人们不仅尝试阻断癌细胞中脂肪酸(FAs)的过度合成,还尝试破坏脂质供应。虽然这两种策略作为单一疗法都取得了可喜的成果,但仍有可能诱发抗药性途径,从而削弱抗癌效果。人们对 OC 中脂质生物合成的内源性调节进行了广泛研究。然而,基质细胞在调节抗脂质生成药物作用中的作用尚未得到充分证实。因此,本研究考察了当新生 FA 合成受阻时,OC 细胞与相关基质细胞之间的相互作用。作者最近发现,当向单株培养的 OC 细胞提供 FA 时,药物抑制 FA 合成酶(FASN)(内源性 FA 合成的关键酶)引起的脂质缺乏无法通过增加 OC 细胞对 FA 的吸收来补偿。在本研究中,OC细胞与预载荧光FA的脂肪细胞共培养,考察了FASN抑制对OC向脂肪细胞归巢以及荧光FA从脂肪细胞向OC细胞跨细胞传递的影响。FASN抑制剂G28UCM和Fasnall以浓度依赖的方式刺激了A2780 OC细胞的自发迁移,并刺激了FA从脂肪细胞向OC细胞的转移。在测试的所有类型脂肪细胞中都观察到了类似的效果。本研究中应用的模型表明,与癌症相关的共培养脂肪细胞可通过吸引肿瘤细胞并为细胞提供脂肪酸来减弱 FASN 抑制剂的抗癌作用。这种脂质介导的依赖性可为设计治疗 OC 的新方法提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Targeting endogenous fatty acid synthesis stimulates the migration of ovarian cancer cells to adipocytes and promotes the transport of fatty acids from adipocytes to cancer cells.

Despite significant advances in oncology, 1 of 108 female patients succumb to ovarian cancer (OC) each year. Improved novel treatments against this aggressive disease would be a major improvement. The growth of OC cells has been demonstrated to be highly dependent on lipids. OC cells are abundantly present in the abdominal cavity and omentum, the main sites of OC expansion. Accordingly, it has been attempted not only to block the hyperactive synthesis of fatty acids (FAs) in cancer cells, but also to disrupt lipid supply. While either strategy has yielded promising results as monotherapy, the induction of resistance pathways diminishing the anticancer effects is yet conceivable. The endogenous regulation of lipid biosynthesis in OC has been extensively studied. However, the role of stromal cells in the modulation of the effects of anti‑lipogenic drugs has not yet been well documented. The present study thus examined the interaction between OC cells and associated stromal cells, when de novo FA synthesis was blocked. It has recently been revealed by the authors that when FA are provided to OC cells in monoculture, the lipid deficiency induced by pharmacological inhibition of FA synthase (FASN), the key enzyme of endogenous FA synthesis, cannot be compensated through an increased FA uptake by OC cells. In the present study, OC cells were co‑cultured with adipocytes preloaded with fluorescent FA and the effects of FASN‑inhibition on OC homing to adipocytes and the transcellular delivery of fluorescent FA from adipocytes to OC cells were examined. The FASN inhibitors, G28UCM and Fasnall, stimulated the spontaneous migration of A2780 OC cells in a concentration‑dependent manner and stimulated the transfer of FA from adipocytes to OC cells. Similar effects were observed with all types of adipocytes tested. The models applied in the present study demonstrated that co‑cultured cancer‑associated adipocytes may attenuate the anticancer effects of FASN inhibitors by attracting tumor cells and by supplying the cells with FA. This lipid‑mediated dependency may provide a rationale for the design of new treatment approaches for the treatment of OC.

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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
157
审稿时长
2.1 months
期刊介绍: The main aim of Spandidos Publications is to facilitate scientific communication in a clear, concise and objective manner, while striving to provide prompt publication of original works of high quality. The journals largely concentrate on molecular and experimental medicine, oncology, clinical and experimental cancer treatment and biomedical research. All journals published by Spandidos Publications Ltd. maintain the highest standards of quality, and the members of their Editorial Boards are world-renowned scientists.
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