Development and application of a simple pharmacokinetic model that quantitatively describes the distribution and elimination of the commonly measured proteins.

IF 3.4 Q2 CHEMISTRY, MEDICINAL
ADMET and DMPK Pub Date : 2023-01-01 DOI:10.5599/admet.1570
David G Levitt, Michael D Levitt
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引用次数: 0

Abstract

Increased plasma concentrations of a variety of cellular enzymes (alanine transaminase, aspartate aminotransferase, alkaline phosphatase, amylase, etc.) are commonly used as routine screening tests for a range of conditions. An increased concentration usually is assumed to result from an increased rate of delivery to the plasma. Factors such as decreased metabolism or excretion or altered extravascular distribution usually are ignored. As a prelude to a detailed analysis of all the factors producing altered plasma enzyme levels, we have reviewed the relevant literature describing the pharmacokinetics (PK) of 13 of the commonly measured plasma proteins and developed a PK model that provides a simple physiological description of all the data. Our model starts with the general 3-compartment, 6-parameter system previously developed for albumin and interprets the fluxes in terms of unidirectional sieved protein convectional volume flows from the plasma to the two tissue compartments and equal lymph flows returning to the plasma. This greatly constrains the model such that each protein is characterized by only two adjustable parameters (plasma clearance and sieving factor). In addition to accurately fitting the plasma kinetics, the model can accurately describe the tissue and lymph protein PK. For example, it can describe the thoracic duct lymph protein concentration following an intravenous infusion or the plasma concentration following a subcutaneous tissue injection. This simple model provides a satisfactory framework for the PK of 12 of the 13 proteins investigated. The glycoprotein intestinal alkaline phosphatase is the exception, requiring the addition of a liver recycling compartment involving the asialoglycoprotein receptor.

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开发和应用一种简单的药代动力学模型,定量描述通常测量的蛋白质的分布和消除。
血浆中各种细胞酶(谷丙转氨酶、天冬氨酸转氨酶、碱性磷酸酶、淀粉酶等)的浓度升高通常被用作一系列疾病的常规筛查试验。浓度的增加通常被认为是由于向血浆输送速率的增加。代谢或排泄减少或血管外分布改变等因素通常被忽略。作为详细分析导致血浆酶水平改变的所有因素的前奏,我们回顾了描述13种常用血浆蛋白的药代动力学(PK)的相关文献,并建立了一个PK模型,为所有数据提供简单的生理描述。我们的模型从之前为白蛋白开发的一般3室,6参数系统开始,并根据从血浆到两个组织室的单向筛分蛋白质对流体积流和返回血浆的等量淋巴流来解释通量。这极大地限制了模型,使得每种蛋白质只有两个可调参数(血浆清除率和筛分因子)来表征。除了准确拟合血浆动力学外,该模型还可以准确描述组织和淋巴蛋白PK,例如,它可以描述静脉输注后的胸导管淋巴蛋白浓度或皮下组织注射后的血浆浓度。这个简单的模型为所研究的13种蛋白质中的12种的PK提供了一个令人满意的框架。糖蛋白肠碱性磷酸酶是例外,它需要添加一个涉及asialigalprotein受体的肝脏循环室。
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来源期刊
ADMET and DMPK
ADMET and DMPK Multiple-
CiteScore
4.40
自引率
0.00%
发文量
22
审稿时长
4 weeks
期刊介绍: ADMET and DMPK is an open access journal devoted to the rapid dissemination of new and original scientific results in all areas of absorption, distribution, metabolism, excretion, toxicology and pharmacokinetics of drugs. ADMET and DMPK publishes the following types of contributions: - Original research papers - Feature articles - Review articles - Short communications and Notes - Letters to Editors - Book reviews The scope of the Journal involves, but is not limited to, the following areas: - physico-chemical properties of drugs and methods of their determination - drug permeabilities - drug absorption - drug-drug, drug-protein, drug-membrane and drug-DNA interactions - chemical stability and degradations of drugs - instrumental methods in ADMET - drug metablic processes - routes of administration and excretion of drug - pharmacokinetic/pharmacodynamic study - quantitative structure activity/property relationship - ADME/PK modelling - Toxicology screening - Transporter identification and study
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