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ADME 和药物输送的体外组织模型的批判性评估。

A critical assessment of in vitro tissue models for ADME and drug delivery.

机构信息

School of Pharmacy, University of Eastern Finland, Kuopio, Finland.

Centre for Drug Research, Division of Pharmaceutical Biosciences, University of Helsinki, Helsinki, Finland.

出版信息

J Control Release. 2014 Sep 28;190:94-114. doi: 10.1016/j.jconrel.2014.06.044. Epub 2014 Jun 30.

Abstract

Cultured cells are widely used in the evaluation of new drugs and drug delivery systems. Cells can be grown at different levels of complexity ranging from simple reductionist models to complex organotypic models. The models are based on primary, secondary or stem cell derived cell cultures. Generation of tissue mimics with cultured cells is a difficult task, because the tissues have well-defined morphology, complex protein expression patterns and multiple inter-linked functions. Development of organotypic cell culture models requires proper biomaterial matrix and cell culture protocols that are able to guide the cells to the correct phenotype. This review illustrates the critical features of the cell culture models and, then, selected models are discussed in more detail (epidermal, corneal epithelial, retinal pigment epithelium, and hepatocyte models). The cell models are critically evaluated paying attention to the level of characterization and reliability of in vivo translation. Properties of the cell models must be characterized in detail using multiple biological assays and broad sets of model drugs. Robust in vivo predictions can be achieved with well-characterized cell models that are used in combination with computational methods that will bridge the gap between in vitro cell experiments and physiological situation in vivo in the body.

摘要

培养细胞广泛用于新药和药物输送系统的评估。细胞可以在不同复杂程度的水平上生长,从简单的还原模型到复杂的器官样模型。这些模型基于原代、次代或干细胞衍生的细胞培养物。用培养细胞生成组织模拟物是一项艰巨的任务,因为组织具有明确的形态、复杂的蛋白表达模式和多个相互关联的功能。器官样细胞培养模型的开发需要合适的生物材料基质和细胞培养方案,这些方案能够指导细胞向正确的表型发展。本综述说明了细胞培养模型的关键特征,然后详细讨论了选定的模型(表皮、角膜上皮、视网膜色素上皮和肝细胞模型)。通过关注体内转化的表征水平和可靠性,对细胞模型进行了严格评估。必须使用多种生物学测定和广泛的模型药物详细表征细胞模型的特性。通过使用与计算方法相结合的经过良好表征的细胞模型,可以实现稳健的体内预测,这些计算方法将弥合体外细胞实验与体内生理状态之间的差距。

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