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Development and validation of a new dynamic computer-controlled model of the human stomach and small intestine

机译:开发和验证新型的人体胃和小肠动态计算机控制模型

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For ethical, regulatory, and economic reasons, in vitro human digestion models are increasingly used as an alternative to in vivo assays. This study aims to present the new Engineered Stomach and small INtestine (ESIN) model and its validation for pharmaceutical applications. This dynamic computer-controlled system reproduces, according to in vivo data, the complex physiology of the human stomach and small intestine, including pH, transit times, chyme mixing, digestive secretions, and passive absorption of digestion products. Its innovative design allows a progressive meal intake and the differential gastric emptying of solids and liquids. The pharmaceutical behavior of two model drugs (paracetamol immediate release form and theophylline sustained release tablet) was studied in ESIN during liquid digestion. The results were compared to those found with a classical compendial method (paddle apparatus) and in human volunteers. Paracetamol and theophylline tablets showed similar absorption profiles in ESIN and in healthy subjects. For theophylline, a level A in vitro-in vivo correlation could be established between the results obtained in ESIN and in humans. Interestingly, using a pharmaceutical basket, the swelling and erosion of the theophylline sustained release form was followed during transit throughout ESIN. ESIN emerges as a relevant tool for pharmaceutical studies but once further validated may find many other applications in nutritional, toxicological, and microbiological fields. Biotechnol. Bioeng. 2016;113: 1325-1335. (c) 2015 Wiley Periodicals, Inc.
机译:出于伦理,法规和经济方面的原因,体外人类消化模型越来越多地用作体内测定的替代方法。这项研究旨在介绍新的工程胃和小肠(ESIN)模型及其在制药领域的验证。根据体内数据,该动态计算机控制系统可复制人胃和小肠的复杂生理结构,包括pH值,转运时间,食糜混合,消化分泌物和消化产物的被动吸收。它的创新设计允许渐进式进餐和不同程度的固体和液体胃排空。在ESIN中,通过液体消化研究了两种模型药物(对乙酰氨基酚速释形式和茶碱缓释片)的药理行为。将结果与使用经典药典方法(桨状器械)和人类志愿者的结果进行比较。扑热息痛和茶碱片在ESIN和健康受试者中显示出相似的吸收曲线。对于茶碱,可以在ESIN和人类获得的结果之间建立A体内-体外相关性。有趣的是,在整个ESIN运输过程中,使用了药篮,追踪了茶碱缓释形式的溶胀和侵蚀。 ESIN逐渐成为药物研究的相关工具,但一旦进一步验证,可能会在营养,毒理学和微生物学领域发现许多其他应用。生物技术。生恩2016; 113:1325-1335。 (c)2015年威利期刊有限公司

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