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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Biotransformation Capacity of Carboxylesterase in Skin and Keratinocytes for the Penta-Ethyl Ester Prodrug of DTPA
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Biotransformation Capacity of Carboxylesterase in Skin and Keratinocytes for the Penta-Ethyl Ester Prodrug of DTPA

机译:皮肤和角质形成细胞中羧酸酯酶对DTPA的五乙基酯前药的生物转化能力

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The penta-ethyl ester prodrug of the chelating agent diethylene triamine pentaacetic acid (DTPA), referred to as C2E5, effectively accelerated clearance of americium after transdermal delivery. Carboxylesterases (CESs) play important roles in facilitating C2E5 hydrolysis. However, whether CESs in human skin hydrolyze C2E5 remains unknown. We evaluated the gene and protein expression of CESs in distinctive human epidermal cell lines: HEKa, HEKn, HaCaT, and A431. The substrates p-nitrophenyl acetate (pNPA) and 4-nitrophenyl valerate (4-NPV) were used to access esterase and CES activity. C2E5 hydrolysiswasmeasuredby radiometric high-performance liquid chromatography after incubation of [C-14]C2E5 with supernatant fractions after centrifugation at 9000g (S9) prepared from skin cell lines. CES-specific inhibitors were used to access metabolism in human skin S9 fractions with analysis by liquid chromatography-tandem mass spectrometry. We identified the human carboxylesterase 1 and 2 (CES1 and CES2) bands in a Western blot. The gene expression of these enzymes was supported by a real-time polymerase chain reaction (qPCR). pNPA and 4-NPV assays demonstrated esterase and CES activity in all the cell lines that were comparable to human skin S9 fractions. The prodrug C2E5 was hydrolyzed by skin S9 fractions, resulting in a primary metabolite, C2E4. In human skin S9 fractions, inhibition of C2E5 hydrolysis was greatest with a pan-CES inhibitor (benzil). CES1 inhibition (troglitazone) was greater than CES2 (loperamide), suggesting a primary metabolic role for CES1. These results indicate that human keratinocyte cell lines are useful for the evaluation of human cutaneous metabolism and absorption of ester-based prodrugs. However, keratinocytes from skin provide a small contribution to the overall metabolism of C2E5.
机译:螯合剂二亚乙基三胺五乙酸(DTPA)的五乙酯前药(称为C2E5)可有效促进透皮递送后clearance的清除。羧基酯酶(CES)在促进C2E5水解中起重要作用。但是,人类皮肤中的CES是否能水解C2E5仍然未知。我们评估了人类表皮细胞系HEKa,HEKn,HaCaT和A431中CES的基因和蛋白质表达。底物乙酸对硝基苯酯(pNPA)和戊酸4-硝基苯酯(4-NPV)用于获得酯酶和CES活性。在将[C-14] C2E5与从皮肤细胞系制备的9000g(S9)离心后的上清液级分孵育后,通过放射高效液相色谱法测定C2E5水解。通过液相色谱-串联质谱分析,使用CES特异性抑制剂来获取人皮肤S9部分的代谢。我们在蛋白质印迹法中确定了人类羧酸酯酶1和2(CES1和CES2)带。实时聚合酶链反应(qPCR)支持这些酶的基因表达。 pNPA和4-NPV分析表明,在所有与人类皮肤S9组分相当的细胞系中,酯酶和CES活性。前药C2E5被皮肤S9馏分水解,产生主要代谢产物C2E4。在人皮肤S9馏分中,使用pan-CES抑制剂(苯并il)对C2E5水解的抑制作用最大。 CES1的抑制作用(曲格列酮)大于CES2(洛哌丁胺),表明CES1的主要代谢作用。这些结果表明,人角质形成细胞系可用于评估人的皮肤代谢和酯基前药的吸收。但是,来自皮肤的角质形成细胞对C2E5的整体代谢贡献很小。

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