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首页> 外文期刊>Veterinary Sciences >Alkylation and Carbamylation Effects of Lomustine and Its Major Metabolites and MGMT Expression in Canine Cells
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Alkylation and Carbamylation Effects of Lomustine and Its Major Metabolites and MGMT Expression in Canine Cells

机译:犬莫司汀及其主要代谢产物和MGMT在犬细胞中的烷基化和氨基甲酸酯化作用

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DNA Alkylation is thought to be the reason for the efficacy of lomustine while carbamylation has been implicated as the cause for the side effects seen with lomustine treatment such as hepatotoxicity. In the alkylation study we show that lomustine and its metabolites form similar levels of the DNA adducts N7 hydroxyethylguanine and O6 hydroxyethyldeoxyguanosine. In terms of carbamylation, lomustine showed greater extent of carbamylation in the canine hepatocytes and lymphoma cell lines. The DNA repair enzyme O6 methylguanine DNA methyltransferase (MGMT) causes resistance of tumor cells to bifunctional nitrosourea, like lomustine. There is no data available regarding MGMT expression/activity in canine cells or tissues. Our study shows that there is low MGMT activity in the canine lymphoid cell line 17–71 while the GL-1 cells did not show any detectable enzyme activity or mRNA expression. The MGMT enzyme activity measured in canine hepatocytes is about 250–350 fmol/mg protein as compared to about 90 fmol/mg protein in 17–71 cells. We also show that MGMT mRNA expression in 17–71 cells and canine hepatocytes positively correlates with its enzyme activity in these cells.
机译:DNA烷基化被认为是洛莫司汀功效的原因,而氨甲酰化已被认为是洛莫司汀治疗所见副作用(如肝毒性)的原因。在烷基化研究中,我们证明了洛莫司汀及其代谢产物形成相似水平的DNA加合物N 7 羟乙基鸟嘌呤和O 6 羟乙基脱氧鸟苷。就氨基甲酸酯化而言,洛莫司汀在犬肝细胞和淋巴瘤细胞系中显示出更大程度的氨基甲酸酯化。 DNA修复酶O 6 甲基鸟嘌呤DNA甲基转移酶(MGMT)引起肿瘤细胞对双功能亚硝基脲的抵抗,如洛莫司汀。没有有关犬细胞或组织中MGMT表达/活性的数据。我们的研究表明,犬淋巴样细胞株17-71中的MGMT活性较低,而GL-1细胞未显示任何可检测的酶活性或mRNA表达。在犬肝细胞中测得的MGMT酶活性约为250-350 fmol / mg蛋白,而17-71细胞中约为90 fmol / mg蛋白。我们还显示,MGMT mRNA在17-71个细胞和犬肝细胞中的表达与其在这些细胞中的酶活性成正相关。

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