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一种在存在自杀性抑制药物的情况下对酶周转进行建模的新方法:一项关于MAG脂肪酶的概念验证脑PET研究。

A novel approach for modeling enzyme turnover in the presence of a suicide inhibitor drug: A proof-of-concept brain PET study on MAG lipase.

作者信息

Volpi Tommaso, Holden Daniel, Gallezot Jean-Dominique, Nabulsi Nabeel, Lim Keunpoong, Labaree David, Gao Hong, Kapinos Michael, Keliher Edmund J, Fonseca Kari R, Trapa Patrick, Varrone Andrea, Halldin Christer, Maresca Kevin P, Huang Yiyun, Carson Richard E

机构信息

Department of Radiology and Biomedical Imaging, PET Center, Yale University, New Haven, CT, USA.

Worldwide Research and Development, Pfizer Inc., Cambridge, MA, USA.

出版信息

J Cereb Blood Flow Metab. 2025 May 15:271678X251329254. doi: 10.1177/0271678X251329254.

Abstract

PET imaging allows the study of enzyme concentration and activity . The enzyme natural turnover , relevant for drug development, can be estimated if a suicide inhibitor drug is used. The main aim of this study was to develop a model for estimating by accounting for the presence of residual inhibitor. We analyzed nonhuman primate PET data with monoacyglycerol lipase (MAGL) tracer [C]PF-06809247, and suicide inhibitor PF-06818883 (0.03-1.27 mg/kg, active compound PF-06807893). As [C]PF-06809247 is an irreversible tracer, we used simulations to evaluate the impact of flow limitation on identifiability of kinetic parameters. Based on this, MAGL activity estimates were obtained from three outcome parameters: , , (=). A new model, which links enzyme activity to the inhibitor drug's plasma concentration, was used to estimate . Using a conservative statistical cut-off, MAGL turnover half-lives were estimated (: 3.9 h; : 4.6 h; : 6.1 h) - with faster turnover for (flow-limited). Serial PET experiments and measuring the drug's plasma concentration allowed to estimate correcting for residual suicide inhibition. This approach can be extended to other PET enzyme targets, improving our understanding of enzyme pathological alterations and suicide inhibitor-based therapies.

摘要

正电子发射断层扫描(PET)成像可用于研究酶的浓度和活性。如果使用自杀性抑制剂药物,就可以估算出与药物开发相关的酶自然周转率。本研究的主要目的是建立一个考虑残留抑制剂存在情况下进行估算的模型。我们使用单酰甘油脂肪酶(MAGL)示踪剂[C]PF - 06809247和自杀性抑制剂PF - 06818883(0.03 - 1.27毫克/千克,活性化合物PF - 06807893)分析了非人类灵长类动物的PET数据。由于[C]PF - 06809247是一种不可逆示踪剂,我们通过模拟来评估流量限制对动力学参数可识别性的影响。基于此,从三个结果参数(,,(=))获得了MAGL活性估计值。一个将酶活性与抑制剂药物血浆浓度联系起来的新模型被用于估算。使用保守的统计截止值,估算出MAGL周转半衰期(:3.9小时;:4.6小时;:6.1小时)——(流量受限)的周转更快。连续PET实验和测量药物血浆浓度能够在考虑残留自杀性抑制的情况下估算。这种方法可以扩展到其他PET酶靶点,增进我们对酶病理改变和基于自杀性抑制剂的治疗方法的理解。

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