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首页> 外文期刊>Advances in Radiation Oncology >Cytotoxicity and Radiosensitizing Activity of the Fatty Acid Synthase Inhibitor C75 Is Enhanced by Blocking Fatty Acid Uptake in Prostate Cancer Cells
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Cytotoxicity and Radiosensitizing Activity of the Fatty Acid Synthase Inhibitor C75 Is Enhanced by Blocking Fatty Acid Uptake in Prostate Cancer Cells

机译:通过阻断前列腺癌细胞中脂肪酸摄取来增强脂肪酸合酶抑制剂C75的细胞毒性和放射腺度活性。

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摘要

Prostate cancers, like many other types of cancer, express elevated levels of fatty acid synthase (FASN) to make more fatty acids, which are required for energy, signaling, and proliferation. Because inhibition of FASN has been shown to sensitize tumors to chemotherapy and radiation, we studied the effect of C75, a radiosensitizing FASN inhibitor, and compared its single agent and radiosensitizing activities in 2 prostate cancer cell lines, PC3 and LNCaP, with alternative FASN inhibitors that have progressed into clinical trials. We also investigated the effect of serum and fatty acid supplementation on responses to FASN inhibitors, probing expression of key proteins related to fatty acid uptake in response to FASN inhibition, irradiation, and serum lipid concentration and how this may be modulated to increase the potency of C75. We demonstrated that C75 was the only FASN inhibitor to sensitize cells to ionizing radiation; no sensitization was apparent with FASN inhibitors TVB-3166 or Orlistat. The prostate cancer cell lines were able to take up fatty acids from the culture medium, and the availability of fatty acids affected sensitivity of these cells to C75 but not the other FASN inhibitors tested. C75 also increased expression of fatty acid transporter proteins FATP1 and CD36. Furthermore, blocking CD36 with antibody increased the sensitivity of cells to C75. We suggest that the potency of C75 is affected by fatty acid availability and that the effectiveness of FASN inhibitors in combination with ionizing radiation can be further enhanced by regulating fatty acid uptake.
机译:前列腺癌,与许多其他类型的癌症一样,表达升高的脂肪酸合成酶(FASN),以制备更多的脂肪酸,这是能量,信号传导和增殖所必需的。由于已显示对FasN的抑制来使肿瘤敏感到化疗和辐射,所以我们研究了C75,放射腺分音定位FasN抑制剂的效果,并将其单一剂和辐射敏化活性与2个前列腺癌细胞系,PC3和LNCAP中的活性化进行了比较,具有替代的FasN抑制剂已进入临床试验。我们还研究了血清和脂肪酸补充对FasN抑制剂的反应的影响,响应FasN抑制,辐照和血清脂质浓度的脂肪酸摄取有关的关键蛋白的表达以及如何调节,以增加效力C75。我们证明C75是唯一用于使细胞敏感到电离辐射的FasN抑制剂; Fasn抑制剂TVB-3166或Orlistat不明显致敏。前列腺癌细胞系能够从培养基中吸收脂肪酸,并且脂肪酸的可用性会影响这些细胞对C75的敏感性,但不是测试的其他FASN抑制剂。 C75还增加了脂肪酸转运蛋白BATP1和CD36的表达。此外,通过抗体阻断CD36增加了细胞对C75的敏感性。我们建议C75的效力受到脂肪酸可用性的影响,并且通过调节脂肪酸摄取,可以进一步增强FasN抑制剂与电离辐射结合的有效性。

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