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微生理系统在细胞治疗非临床评价中的应用。

Application of microphysiological systems for nonclinical evaluation of cell therapies.

机构信息

3D and 3Rs Ltd., Cambridge, UK; previously at Complex In Vitro Models, GSK, Stevenage, UK.

Cell & Gene Therapy Safety, Clinical Pharmacology & Safety Science, R&D, AstraZeneca, Mölndal, Sweden.

出版信息

ALTEX. 2024;41(3):469-484. doi: 10.14573/altex.2402201. Epub 2024 May 15.

Abstract

Microphysiological systems (MPS) are gaining broader application in the pharmaceutical industry but have primarily been leveraged in early discovery toxicology and pharmacology studies with small molecules. The adoption of MPS offers a promising avenue to reduce animal use, improve in-vitro-to-in-vivo translation of pharmacokinetics/pharmacodynamics and toxicity correlation, and provide mechanistic understanding of model species suitability. While MPS have demonstrated utility in these areas with small molecules and biologics, MPS models in cell therapy development have not been fully explored, let alone validated. Distinguishing features of MPS, including long-term viability and physiologically relevant expression of functional enzymes, receptors, and pharmacological targets make them attractive tools for nonclinical characterization. However, there is currently limited published evidence of MPS being utilized to study the disposition, metabolism, pharmacology, and toxicity profiles of cell therapies. This review provides an industry perspective on the nonclinical application of MPS on cell therapies, first with a focus on oncology applications followed by examples in regenerative medicine.

摘要

微生理系统(MPS)在制药行业中的应用越来越广泛,但主要用于小分子的早期发现毒理学和药理学研究。采用 MPS 为减少动物使用、提高药代动力学/药效学的体外到体内转化以及毒性相关性以及提供对模型物种适用性的机制理解提供了一条很有前途的途径。虽然 MPS 已经在小分子和生物制剂的这些领域中证明了其有用性,但细胞治疗开发中的 MPS 模型尚未得到充分探索,更不用说验证了。MPS 的显著特点包括长期生存能力和功能酶、受体和药理学靶标的生理相关表达,这使得它们成为非临床特征描述的有吸引力的工具。然而,目前关于 MPS 用于研究细胞治疗的处置、代谢、药理学和毒性特征的出版物证据有限。本综述从肿瘤学应用开始,然后是再生医学的例子,从行业角度提供了 MPS 在细胞治疗中的非临床应用的观点。

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