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首页> 外文期刊>Breast Cancer Research >Progesterone metabolites regulate induction, growth, and suppression of estrogen- and progesterone receptor-negative human breast cell tumors
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Progesterone metabolites regulate induction, growth, and suppression of estrogen- and progesterone receptor-negative human breast cell tumors

机译:孕酮代谢产物调节雌激素和孕激素受体阴性的人乳腺癌细胞的诱导,生长和抑制

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IntroductionOf the nearly 1.4 million new cases of breast cancer diagnosed each year, a large proportion is characterized as hormone receptor negative, lacking estrogen receptors (ER) and/or progesterone receptors (PR). Patients with receptor-negative tumors do not respond to current steroid hormone-based therapies and generally have significantly higher risk of recurrence and mortality compared with patients with tumors that are ER- and/or PR-positive. Previous in vitro studies had shown that the progesterone metabolites, 5α-dihydroprogesterone (5αP) and 3α-dihydroprogesterone (3αHP), respectively, exhibit procancer and anticancer effects on receptor-negative human breast cell lines. Here in vivo studies were conducted to investigate the ability of 5αP and 3αHP to control initiation, growth, and regression of ER/PR-negative human breast cell tumors.MethodsER/PR-negative human breast cells (MDA-MB-231) were implanted into mammary fat pads of immunosuppressed mice, and the effects of 5αP and 3αHP treatments on tumor initiation, growth, suppression/regression, and histopathology were assessed in five separate experiments. Specific radioimmunoassays and gas chromatography-mass spectrometry were used to measure 5αP, 3αHP, and progesterone in mouse serum and tumors.ResultsOnset and growth of ER/PR-negative human breast cell tumors were significantly stimulated by 5αP and inhibited by 3αHP. When both hormones were applied simultaneously, the stimulatory effects of 5αP were abrogated by the inhibitory effects of 3αHP and vice versa. Treatment with 3αHP subsequent to 5αP-induced tumor initiation resulted in suppression of further tumorigenesis and regression of existing tumors. The levels of 5αP in tumors, regardless of treatment, were about 10-fold higher than the levels of 3αHP, and the 5αP:3αHP ratios were about fivefold higher than in serum, indicating significant changes in endogenous synthesis of these hormones in tumorous breast tissues.ConclusionsThe studies showed that estrogen/progesterone-insensitive breast tumors are sensitive to, and controlled by, the progesterone metabolites 5αP and 3αHP. Tumorigenesis of ER/PR-negative breast cells is significantly enhanced by 5αP and suppressed by 3αHP, the outcome depending on the relative concentrations of these two hormones in the microenvironment in the breast regions. The findings show that the production of 5αP greatly exceeds that of 3αHP in ER/PR-negative tumors and that treatment with 3αHP can effectively block tumorigenesis and cause existing tumors to regress. The results provide the first hormonal theory to explain tumorigenesis of ER/PR-negative breast tissues and support the hypothesis that a high 3αHP-to-5αP concentration ratio in the microenvironment may foster normalcy in noncancerous breast regions. The findings suggest new diagnostics based on the relative levels of these hormones and new approaches to prevention and treatment of breast cancers based on regulating the levels and action mechanisms of anti- and pro-cancer progesterone metabolites.
机译:引言每年诊断出的近140万例乳腺癌新病例中,很大一部分特征是激素受体阴性,缺乏雌激素受体(ER)和/或孕激素受体(PR)。受体阴性肿瘤患者对目前基于类固醇激素的疗法无反应,并且与具有ER和/或PR阳性肿瘤的患者相比,通常具有更高的复发和死亡风险。先前的体外研究表明,孕酮代谢产物5α-二氢孕酮(5αP)和3α-二氢孕酮(3αHP)分别对受体阴性的人乳腺癌细胞系表现出癌变和抗癌作用。在这里进行体内研究以研究5αP和3αHP抑制ER / PR阴性人类乳腺细胞肿瘤的发生,生长和消退的能力。方法植入ER / PR阴性人类乳腺细胞(MDA-MB-231)免疫抑制小鼠的乳腺脂肪垫中,并在五个独立的实验中评估了5αP和3αHP治疗对肿瘤起始,生长,抑制/回归和组织病理学的影响。用特异性放射免疫法和气相色谱-质谱法测定小鼠血清和肿瘤中的5αP,3αHP和孕酮。结果5αP显着刺激ER / PR阴性的人乳腺细胞肿瘤的发生和生长,并被3αHP抑制。当同时使用两种激素时,3αHP的抑制作用消除了5αP的刺激作用,反之亦然。在5αP诱导的肿瘤发生后,用3αHP进行治疗可抑制进一步的肿瘤发生和现有肿瘤的消退。无论治疗如何,肿瘤中5αP的水平比3αHP的水平高约10倍,并且5αP:3αHP的比率比血清中高5倍,这表明在乳腺肿瘤组织中这些激素的内源性合成发生了显着变化结论研究表明,对雌激素/孕激素不敏感的乳腺肿瘤对孕酮代谢物5αP和3αHP敏感并受其控制。 ER / PR阴性乳腺癌细胞的成瘤作用被5αP显着增强,而被3αHP抑制,其结果取决于这两种激素在乳房微环境中的相对浓度。研究结果表明,ER / PR阴性肿瘤中5αP的产生大大超过3αHP的产生,并且3αHP的治疗可以有效地阻断肿瘤的发生并导致现有的肿瘤消退。该结果提供了第一个荷尔蒙理论来解释ER / PR阴性乳腺组织的肿瘤发生,并支持在微环境中高3αHP/-5αP浓度比可促进非癌性乳腺区域正常的假说。研究结果表明,基于这些激素相对水平的新诊断方法以及基于调节抗癌和促癌孕激素代谢物的水平和作用机制的预防和​​治疗乳腺癌的新方法。

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