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Designing safer chemicals: predicting the rates of metabolism of halogenated alkanes.

机译:设计更安全的化学品:预测卤代烷烃的代谢速率。

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摘要

A computational model is presented that can be used as a tool in the design of safer chemicals. This model predicts the rate of hydrogen-atom abstraction by cytochrome P450 enzymes. Excellent correlations between biotransformation rates and the calculated activation energies (delta Hact) of the cytochrome P450-mediated hydrogen-atom abstractions were obtained for the in vitro biotransformation of six halogenated alkanes (1-fluoro-1,1,2,2-tetrachloroethane, 1,1-difluoro-1,2,2-trichloroethane, 1,1,1-trifluro-2,2-dichloroethane, 1,1,1,2-tetrafluoro-2-chloroethane, 1,1,1,2,2,-pentafluoroethane, and 2-bromo-2-chloro-1,1,1-trifluoroethane) with both rat and human enzyme preparations: In(rate, rat liver microsomes) = 44.99 - 1.79(delta Hact), r2 = 0.86; In(rate, human CYP2E1) = 46.99 - 1.77(delta Hact), r2 = 0.97 (rates are in nmol of product per min per nmol of cytochrome P450 and energies are in kcal/mol). Correlations were also obtained for five inhalation anesthetics (enflurane, sevoflurane, desflurane, methoxyflurane, and isoflurane) for both in vivo and in vitro metabolism by humans: In[F(-)]peak plasma = 42.87 - 1.57(delta Hact), r2 = 0.86. To our knowledge, these are the first in vivo human metabolic rates to be quantitatively predicted. Furthermore, this is one of the first examples where computational predictions and in vivo and in vitro data have been shown to agree in any species. The model presented herein provides an archetype for the methodology that may be used in the future design of safer chemicals, particularly hydrochlorofluorocarbons and inhalation anesthetics.
机译:提出了一种计算模型,可以将其用作设计更安全的化学品的工具。该模型预测了细胞色素P450酶提取氢原子的速率。对于六种卤代烷烃(1-氟-1,1,2,2-四氯乙烷,六氟乙烷)的体外生物转化,获得了生物转化速率与细胞色素P450介导的氢原子抽象的活化能(δHact)之间的极佳相关性。 1,1-二氟-1,2,2-三氯乙烷,1,1,1-三氟-2,2-二氯乙烷,1,1,1,2-四氟-2-氯乙烷,1,1,1,2, 2,5-戊氟乙烷和2-溴-2-氯-1,1,1-三氟乙烷)和大鼠和人类的酶制剂:In(比率,大鼠肝微粒体)= 44.99-1.79(δHact),r2 = 0.86 ; In(人类CYP2E1的比率)= 46.99-1.77(ΔHact),r2 = 0.97(比率是每nmol细胞色素P450每分钟产品的nmol产品/分钟,能量单位是kcal / mol。还获得了五种吸入麻醉药(安氟醚,七氟醚,地氟烷,甲氧基氟烷和异氟烷)在人体体内和体外代谢的相关性:在[F(-)]峰血浆中= 42.87-1.57(δHact),r2 = 0.86。据我们所知,这些是第一个可以定量预测的体内人类代谢率。此外,这是第一个例子,其中计算预测以及体内和体外数据已显示在任何物种中都是一致的。本文介绍的模型为可用于将来设计更安全的化学品(尤其是氢氯氟烃和吸入麻醉剂)的方法提供了原型。

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