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体外人类胃肠道模拟系统:全景综述。

In Vitro Human Gastrointestinal Tract Simulation Systems: A Panoramic Review.

机构信息

Advanced Enzyme Technologies Ltd., 5th Floor, A-Wing, Sun Magnetica, Louiswadi, Maharashtra, Thane West, India.

出版信息

Probiotics Antimicrob Proteins. 2024 Apr;16(2):501-518. doi: 10.1007/s12602-023-10052-y. Epub 2023 Mar 29.

Abstract

Simulated human gastrointestinal (GI) tract systems are important for their applications in the fields of probiotics, nutrition and health. To date, various in vitro gut systems have been available to study GI tract dynamics and its association with health. In contrast to in vivo investigations, which are constrained by ethical considerations, in vitro models have several benefits despite the challenges involved in mimicking the GI environment. These in vitro models can be used for a range of research, from simple to dynamic, with one compartment to several compartments. In this review, we present a panoramic development of in vitro GI models for the first time through an evolutionary timeline. We tried to provide insight on designing an in vitro gut model, especially for novices. Latest developments and scope for improvement based on the limitations of the existing models were highlighted. In conclusion, designing an in vitro GI model suitable for a particular application is a multifaceted task. The bio-mimicking of the GI tract specific to geometrical, anatomical and mechanical features remains a challenge for the development of effective in vitro GI models. Advances in computer technology, artificial intelligence and nanotechnology are going to be revolutionary for further development. Besides this, in silico high-throughput technologies and miniaturisation are key players in the success of making in vitro modelling cost-effective and reducing the burden of in vivo studies.

摘要

模拟人体胃肠道(GI)系统在益生菌、营养和健康领域的应用中非常重要。迄今为止,已经有各种体外肠道系统可用于研究胃肠道动力学及其与健康的关系。与受到伦理考虑限制的体内研究不同,尽管在模拟胃肠道环境方面存在挑战,但体外模型具有许多优势。这些体外模型可用于从简单到动态、从一个隔室到多个隔室的各种研究。在这篇综述中,我们首次通过时间轴全景展示了体外 GI 模型的发展。我们试图为初学者提供设计体外肠道模型的见解。根据现有模型的局限性,强调了最新的发展和改进的空间。总之,设计适合特定应用的体外 GI 模型是一项多方面的任务。针对特定的几何形状、解剖学和机械特征对胃肠道进行生物模拟仍然是开发有效体外 GI 模型的一个挑战。计算机技术、人工智能和纳米技术的进步将为进一步发展带来革命性的变化。除此之外,基于计算机的高通量技术和小型化是使体外建模具有成本效益和减少体内研究负担的关键因素。

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