首页> 美国卫生研究院文献>British Journal of Cancer >Role of membrane folate-binding protein in the cytotoxicity of 510-dideazatetrahydrofolic acid in human ovarian carcinoma cell lines in vitro.
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Role of membrane folate-binding protein in the cytotoxicity of 510-dideazatetrahydrofolic acid in human ovarian carcinoma cell lines in vitro.

机译:叶酸结合蛋白在人卵巢癌细胞系中510-二叠氮基氢叶酸的细胞毒性中的作用。

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摘要

Lometrexol (5,10-dideazatetrahydrofolic acid; DDATHF), is a specific inhibitor of glycinamideribonucleosyl (GAR) transformylase with anti-tumour activity in murine and human carcinomas. The cytotoxicity activity of DDATHF was evaluated in vitro in NIH/3T3 cells transfected with human alpha-folate-binding protein (FBP) complementary DNA to examine the role of the receptor. In FBP-transfected NIH/3T3 (FBP-tNIH/3T3) cells, which internalised about three times more 5-methyltetrahydrofolic acid than the mock-transfected cells, the cytotoxtic potential of DDATHF showed a clear increase. Subsequently, we analysed four ovarian carcinoma cell lines (OVCAR3, IGROV1, SKOV3, and SW626) expressing different amounts of FBP. Cells were conditioned to grow in medium depleted of folic acid then tested by MOv18 and folic acid binding. Only SKOV3 and SW626 cells grown in folic acid-depleted medium showed increased FBP expression, about 3- and 8-fold respectively. The cytotoxic potential of DDATHF was evaluated by a standard clonogenic assay. In a medium containing 2.27 microM folic acid the DDATHF IC50 values were 50 nm on OVCAR3, 500 nM on SW626 and 1000 nM on IGROV1. In folic acid-free medium IC50 values were 2 nM on OVCAR3 and Sw626 and 40 nM on IGROV1. Only on SKOV3 cells was DDATHF cytotoxicity the same regardless of the amount of folic acid in the medium (IC50 8 nM). Thus, DDATHF did not inhibit the growth of IGROV1 cells depleted of folic acid after stripping FBP with phosphatidylinositol-phospholipase C, even at a dose toxic for cells constitutively expressing FBP. Although FBP expression is certainly one of the parameters affecting drug toxicity, taken alone it is not a sufficiently reliable predictor of cancer cell sensitivity to DDATHF.
机译:洛美特索(5,10-二叠氮基四氢叶酸; DDATHF)是一种甘氨酰胺核糖核苷酸(GAR)转化酶的特异性抑制剂,在鼠类和人类癌症中均具有抗肿瘤活性。在体外用人α-叶酸结合蛋白(FBP)互补DNA转染的NIH / 3T3细胞中评估了DDATHF的细胞毒性活性,以检查该受体的作用。在FBP转染的NIH / 3T3(FBP-tNIH / 3T3)细胞中,5-甲基四氢叶酸的内在作用比模拟转染的细胞多三倍,DDATHF的细胞毒性潜力明显增加。随后,我们分析了表达不同量FBP的四种卵巢癌细胞系(OVCAR3,IGROV1,SKOV3和SW626)。调节细胞使其在缺乏叶酸的培养基中生长,然后通过MOv18和叶酸结合进行测试。在缺乏叶酸的培养基中生长的只有SKOV3和SW626细胞显示出增加的FBP表达,分别约为3倍和8倍。通过标准克隆形成试验评估DDATHF的细胞毒性潜力。在含有2.27 microM叶酸的培养基中,DDATHF IC50值在OVCAR3上为50 nm,在SW626上为500 nM,在IGROV1上为1000 nM。在无叶酸培养基中,OVCAR3和Sw626的IC50值为2 nM,IGROV1的IC50值为40 nM。不论培养基中叶酸的量如何,仅在SKOV3细胞上DDATHF的细胞毒性都相同(IC50 8 nM)。因此,即使以对组成型表达FBP的细胞有毒的剂量,DDATHF也不会抑制用磷脂酰肌醇-磷脂酶C剥离FBP后耗尽叶酸的IGROV1细胞的生长。尽管FBP的表达肯定是影响药物毒性的参数之一,但单独使用它并不是癌细胞对DDATHF敏感性的足够可靠的预测指标。

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