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皮下药物吸收预测 - 我们是否有可靠的数据来设计模拟的细胞间液?

Prediction of subcutaneous drug absorption - do we have reliable data to design a simulated interstitial fluid?

机构信息

Sanofi-Aventis Deutschland GmbH, R&D, Global CMC Development, Synthetics Platform. Industriepark Hoechst, H770, D-65926 Frankfurt Am Main, Germany; Department of Pharmacy, Institute of Biopharmaceutics and Pharmaceutical Technology, Center of Drug Absorption and Transport, University of Greifswald, 3 Felix Hausdorff Street, 17489 Greifswald, Germany.

Sanofi-Aventis Deutschland GmbH, R&D, Global CMC Development, Synthetics Platform. Industriepark Hoechst, H770, D-65926 Frankfurt Am Main, Germany.

出版信息

Int J Pharm. 2021 Dec 15;610:121257. doi: 10.1016/j.ijpharm.2021.121257. Epub 2021 Nov 1.

DOI:10.1016/j.ijpharm.2021.121257
PMID:34737015
Abstract

For many years subcutaneous (SC) administration has represented the main route for delivering biopharmaceuticals. However, little information exists about the milieu in the subcutaneous tissue, especially about the properties/composition of the fluid present in this tissue, the interstitial fluid (ISF), which is one of the key elements for the drug release and absorption. Better knowledge on SC ISF composition, properties and dynamics may provide better insight into in vivo drug performance. In addition, a simulated SC ISF, which allows better prediction of in vivo absorption of drugs after subcutaneous administration based on in vitro release experiments, would help to improve formulation design, and reduce the number of animal studies and clinical trials required to obtain marketing authorization. To date, a universal medium for predicting drug solubility/release in the interstitial space does not exist. This review provides an overview of the currently available information on composition and physicochemical properties of SC ISF and critically discusses different isolation techniques in the context of information that could be gained from the isolated fluid. Moreover, it surveys current in vitro release media aiming to mimic SC ISF composition and highlights information gaps that need to be filled for designing a meaningful artificial SC ISF.

摘要

多年来,皮下(SC)给药一直是生物制药的主要给药途径。然而,关于皮下组织内环境的信息很少,特别是关于存在于该组织中的液体(间质液,ISF)的特性/组成的信息,ISF 是药物释放和吸收的关键因素之一。更好地了解 SC ISF 的组成、特性和动力学特性,可能有助于深入了解体内药物的性能。此外,模拟的 SC ISF 可以根据体外释放实验更好地预测皮下给药后体内药物的吸收情况,有助于改进制剂设计,并减少获得上市许可所需的动物研究和临床试验数量。迄今为止,还没有一种通用的介质可以预测药物在间质空间中的溶解度/释放。本综述概述了目前关于 SC ISF 组成和理化特性的可用信息,并在可以从分离的流体中获得的信息的背景下,批判性地讨论了不同的分离技术。此外,还调查了目前旨在模拟 SC ISF 组成的体外释放介质,并强调了为设计有意义的人工 SC ISF 而需要填补的信息空白。

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