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一种多功能、隔室化的肠道芯片系统,用于药理学和毒理学分析。

A versatile, compartmentalised gut-on-a-chip system for pharmacological and toxicological analyses.

机构信息

Pharmaceutical Analysis, Groningen Research Institute of Pharmacy, University of Groningen, P.O. Box 196, XB20, 9700 AD, Groningen, The Netherlands.

TI-COAST, Science Park 904, 1098 XH, Amsterdam, The Netherlands.

出版信息

Sci Rep. 2021 Mar 1;11(1):4920. doi: 10.1038/s41598-021-84187-9.

Abstract

A novel, integrated, in vitro gastrointestinal (GI) system is presented to study oral bioavailability parameters of small molecules. Three compartments were combined into one hyphenated, flow-through set-up. In the first compartment, a compound was exposed dynamically to enzymatic digestion in three consecutive microreactors, mimicking the processes of the mouth, stomach, and intestine. The resulting solution (chyme) continued to the second compartment, a flow-through barrier model of the intestinal epithelium allowing absorption of the compound and metabolites thereof. The composition of the effluents from the barrier model were analysed either offline by electrospray-ionisation-mass spectrometry (ESI-MS), or online in the final compartment using chip-based ESI-MS. Two model drugs, omeprazole and verapamil, were used to test the integrated model. Omeprazole was shown to be broken down upon treatment with gastric acid, but reached the cell barrier unharmed when introduced to the system in a manner emulating an enteric-coated formulation. In contrast, verapamil was unaffected by digestion. Finally, a reduced uptake of verapamil was observed when verapamil was introduced to the system dissolved in apple juice, a simple food matrix. It is envisaged that this integrated, compartmentalised GI system has potential for enabling future research in the fields of pharmacology, toxicology, and nutrition.

摘要

一种新颖的、集成的、体外胃肠道(GI)系统被提出用于研究小分子的口服生物利用度参数。三个隔室被组合成一个串联的、流动式的设置。在第一个隔室中,化合物在三个连续的微反应器中动态暴露于酶消化,模拟口腔、胃和肠道的过程。所得溶液(食糜)继续进入第二个隔室,这是一个肠道上皮的流动式屏障模型,允许化合物及其代谢物的吸收。屏障模型的流出物的组成可以通过电喷雾电离-质谱(ESI-MS)离线分析,也可以在最后一个隔室中在线使用基于芯片的 ESI-MS 进行分析。两种模型药物,奥美拉唑和维拉帕米,被用于测试集成模型。奥美拉唑在胃酸处理下被分解,但当以模拟肠溶制剂的方式引入系统时,它完好无损地到达细胞屏障。相比之下,维拉帕米不受消化的影响。最后,当维拉帕米溶解在苹果汁等简单的食物基质中引入系统时,观察到维拉帕米的摄取减少。可以预见,这种集成的、分隔的 GI 系统具有在药理学、毒理学和营养学等领域开展未来研究的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1ab/7921645/4d6cf6280a3b/41598_2021_84187_Fig1_HTML.jpg

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