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用于评估药物渗透性的肠道功能3D模型复制

3D Model Replicating the Intestinal Function to Evaluate Drug Permeability.

作者信息

Pereira Inês, Lechanteur Anna, Sarmento Bruno

机构信息

I3S - Instituto de Investigação e Inovação na Saúde, University of Porto, Porto, Portugal.

FEUP - Faculdade de Engenharia, University of Porto, Porto, Portugal.

出版信息

Methods Mol Biol. 2018;1817:107-113. doi: 10.1007/978-1-4939-8600-2_11.

Abstract

Animal models are essential in drug development but present many concerns in the practical and ethical sense. To avoid the unnecessary use of animals other models are used in the beginning of any scientific discovery, the in vitro models. The relevance of in vitro cell based culture models for studying intestinal drug absorption and transcytosis during early stages of drug development is undeniable. Several in vitro co-culture models have been described for this purpose, however excluding the integration of the complex intestinal architecture and neglecting different physiological mechanisms involved in the drug transport. 2-D cell cultures are the current standard, but despite their widely use, they no longer are considered the most trustworthy in vitro models since they do not mimic many aspects that happen in vivo. The simulation of a complete microenvironment capable of mimicking the intestinal mucosa requires therefore further investigation, particularly focused in addressing the abovementioned unmet needs. 3D models came as bridge between the in vitro and in vivo models. These models are proven to be influential of the drug effect in cells, being the most adequate to mimic the live tissue especially in drug development. Supported by the great amount of studies using simple and reductionist co-culture monolayers, and pushing forward an innovative model previously reported by our group, the present study aims to describe a sophisticated and highly reproducible in vitro 3D co-culture intestinal model. Here, the components are assembled in a multistage process into Transwell filters by co-culturing human colon carcinoma Caco-2 and mucus-producing HT29-MTX cells over a layer of collagen embedding intestinal myofibroblasts (CCD-18Co). The 3D co-culture intestinal model described herein represents a particularly powerful and versatile tool that recapitulates the intestinal functioning regarding mucus production, tightness of the different cell types, and the 3D architecture, bridging the gap between simple monolayer cultures of epithelial cells and the complex in vivo physiological conditions. Importantly, it shows tremendous potential in predicting intestinal absorption of orally administered drugs when delivered alone, or encapsulated into micro- and nanosystems, the current leading force of pharmaceutical technology research.

摘要

动物模型在药物研发中至关重要,但在实际操作和伦理层面存在诸多问题。为避免不必要地使用动物,在任何科学发现之初都会使用其他模型,即体外模型。基于体外细胞的培养模型在药物研发早期研究肠道药物吸收和转胞吞作用方面的相关性不可否认。为此已描述了几种体外共培养模型,但这些模型未纳入复杂的肠道结构,也忽略了药物转运中涉及的不同生理机制。二维细胞培养是当前的标准方法,但尽管其被广泛使用,由于无法模拟体内发生的许多方面,它们不再被认为是最可靠的体外模型。因此,模拟能够模仿肠黏膜的完整微环境需要进一步研究,尤其要专注于满足上述未满足的需求。三维模型成为体外模型和体内模型之间的桥梁。这些模型已被证明对细胞中的药物效应有影响,尤其在药物研发中最适合模拟活组织。在大量使用简单且简化的共培养单层的研究支持下,并推动我们团队之前报道的创新模型,本研究旨在描述一种复杂且高度可重复的体外三维共培养肠道模型。在此,通过在包埋肠道肌成纤维细胞(CCD - 18Co)的一层胶原蛋白上共培养人结肠癌细胞Caco - 2和产生黏液的HT29 - MTX细胞,在多阶段过程中将各组分组装到Transwell过滤器中。本文所述的三维共培养肠道模型是一种特别强大且通用的工具,它概括了关于黏液产生、不同细胞类型的紧密性以及三维结构的肠道功能,弥合了上皮细胞简单单层培养与复杂体内生理条件之间的差距。重要的是,当单独给药或封装入微系统和纳米系统时,它在预测口服药物的肠道吸收方面显示出巨大潜力,而微系统和纳米系统是药物技术研究的当前主导力量。

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