Suppr超能文献

用于人类和动物物种生理相关药代动力学建模的基因表达数据库。

Gene expression databases for physiologically based pharmacokinetic modeling of humans and animal species.

机构信息

Drug Metabolism & Pharmacokinetics, Sanofi-Aventis Deutschland GmbH, Industriepark Höchst, Frankfurt am Main, Germany.

Research Drug Metabolism & Pharmacokinetics, Drug Discovery Sciences, Boehringer Ingelheim Pharma GmbH & Co. KG, Biberach, Germany.

出版信息

CPT Pharmacometrics Syst Pharmacol. 2023 Mar;12(3):311-319. doi: 10.1002/psp4.12904. Epub 2023 Jan 30.

Abstract

In drug research, developing a sound understanding of the key mechanistic drivers of pharmacokinetics (PK) for new molecular entities is essential for human PK and dose predictions. Here, characterizing the absorption, distribution, metabolism, and excretion (ADME) processes is crucial for a mechanistic understanding of the drug-target and drug-body interactions. Sufficient knowledge on ADME processes enables reliable interspecies and human PK estimations beyond allometric scaling. The physiologically based PK (PBPK) modeling framework allows the explicit consideration of organ-specific ADME processes. The sum of all passive and active ADME processes results in the observed plasma PK. Gene expression information can be used as surrogate for protein abundance and activity within PBPK models. The absolute and relative expression of ADME genes can differ between species and strains. This is affecting both, the PK and pharmacodynamics and is therefore posing a challenge for the extrapolation from preclinical findings to humans. We developed an automated workflow that generates whole-body gene expression databases for humans and other species relevant in drug development, animal health, nutritional sciences, and toxicology. Solely, bulk RNA-seq data curated and provided by the Swiss Institute of Bioinformatics from healthy, normal, and untreated primary tissue samples were considered as an unbiased reference of normal gene expression. The databases are interoperable with the Open Systems Pharmacology Suite (PK-Sim and MoBi) and enable seamless access to a central source of curated cross-species gene expression data. This will increase data transparency, increase reliability and reproducibility of PBPK model simulations, and accelerate mechanistic PBPK model development in the future.

摘要

在药物研究中,深入了解新分子实体药代动力学(PK)的关键机制驱动因素对于人体 PK 和剂量预测至关重要。在这里,描述吸收、分布、代谢和排泄(ADME)过程对于理解药物-靶标和药物-机体相互作用的机制至关重要。对 ADME 过程有足够的了解,就可以在超越比例缩放的情况下,对种间和人体 PK 进行可靠的估计。基于生理学的 PK(PBPK)建模框架允许明确考虑器官特异性 ADME 过程。所有被动和主动 ADME 过程的总和导致观察到的血浆 PK。基因表达信息可用作 PBPK 模型中蛋白质丰度和活性的替代物。ADME 基因的绝对和相对表达在物种和品系之间可能存在差异。这会影响 PK 和药效学,因此对从临床前发现推断到人类构成挑战。我们开发了一种自动化工作流程,可为药物开发、动物健康、营养科学和毒理学相关的人类和其他物种生成全身体基因表达数据库。仅考虑瑞士生物信息学研究所从健康、正常和未经处理的原发性组织样本中整理和提供的批量 RNA-seq 数据作为正常基因表达的无偏参考。这些数据库与开放系统药理学套件(PK-Sim 和 MoBi)兼容,并能够无缝访问经过整理的跨物种基因表达数据的中央来源。这将提高数据透明度,提高 PBPK 模型模拟的可靠性和可重复性,并加速未来的机制 PBPK 模型开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e2b0/10014062/f98a040de2b4/PSP4-12-311-g003.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验