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Theoretical assessment of a new experimental protocol for determining kinetic values describing mechanism (time)-based enzyme inhibition.

机译:对一种新的实验方案的理论评估,该方案可确定描述基于机理(时间)的酶抑制作用的动力学值。

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We have shown previously that the conventional experimental protocol (CEP) used to characterise mechanism-based enzyme inhibition (MBI) of drug metabolism in vitro may introduce substantial bias in estimates of the relevant kinetic parameters. The aim of this study was to develop and assess, by computer simulation, an alternative, mechanistically-based experimental protocol (MEP). This protocol comprises three parts viz. assessment of the metabolism of the mechanism-based enzyme inactivator (MBEI), of its ability to participate in competitive inhibition and its ability to cause time-dependent inhibition. Thus, values of the maximum inactivation rate constant (k(inact)), the inactivator concentration associated with half-maximal rate of inactivation (K(I)), the partition ration (r), and the reversible inhibition constant (K(i)) of the MBEI are determined by nonlinear optimization of the experimental data using a model that allows for metabolism of both probe substrate and MBEI, the time-course of inactivation of the enzyme, and reversible inhibition of the metabolism of both probe substrate and MBEI. Sensitivity analysis is used to estimate the degree of confidence in the final parameter values. Virtual experiments using the MEP and the CEP were simulated, applying starting kinetic parameters reported for 16 known MBEIs. In the presence of simulated experimental error (5% CV), the MEP recovered accurate estimates of the kinetic values for all compounds, while estimates using the CEP were less accurate and less precise. The MEP promises to improve consistency in the determination of in vitro measures of MBI and, thereby, the quantitative assessment of its in vivo consequences.
机译:先前我们已经表明,用于表征体外药物代谢的基于机理的酶抑制(MBI)的常规实验方案(CEP)可能会在相关动力学参数的估计中引入实质性偏差。这项研究的目的是通过计算机仿真来开发和评估一种替代的基于机械的实验协议(MEP)。该协议包括三个部分。评估基于机制的酶灭活剂(MBEI)的代谢,其参与竞争性抑制的能力以及引起时间依赖性抑制的能力。因此,最大灭活速率常数(k(inact)),与最大灭活速率的一半最大相关的灭活剂浓度(K(I)),分配比(r)和可逆抑制常数(K(i ))通过对模型进行实验数据的非线性优化来确定MBEI,该模型允许探针底物和MBEI的代谢,酶失活的时间过程以及探针底物和MBEI的代谢的可逆抑制。灵敏度分析用于估计最终参数值的置信度。使用报告的16种已知MBEI的起始动力学参数,对使用MEP和CEP进行的虚拟实验进行了模拟。在存在模拟实验误差(5%CV)的情况下,MEP恢复了所有化合物动力学值的准确估计值,而使用CEP进行的估计值准确性和准确性较低。 MEP有望改善MBI体外测定结果确定的一致性,从而定量评估其体内后果。

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