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肠道-脑器官芯片的研究进展。

Advances in gut-brain organ chips.

机构信息

Key Laboratory of Clinical Cancer Pharmacology and Toxicology Research of Zhejiang Province, Affiliated Hangzhou First People's Hospital, School of Medicine, Westlake University, Hangzhou, China.

Department of Pharmacy, Affiliated Hangzhou First People's Hospital, School of Medicine, Westlake University, Hangzhou, China.

出版信息

Cell Prolif. 2024 Sep;57(9):e13724. doi: 10.1111/cpr.13724. Epub 2024 Jul 31.

Abstract

The brain and gut are sensory organs responsible for sensing, transmitting, integrating, and responding to signals from the internal and external environment. In-depth analysis of brain-gut axis interactions is important for human health and disease prevention. Current research on the brain-gut axis primarily relies on animal models. However, animal models make it difficult to study disease mechanisms due to inherent species differences, and the reproducibility of experiments is poor because of individual animal variations, which leads to a significant limitation of real-time sensory responses. Organ-on-a-chip platforms provide an innovative approach for disease treatment and personalized research by replicating brain and gut ecosystems in vitro. This enables a precise understanding of their biological functions and physiological responses. In this article, we examine the history and most current developments in brain, gut, and gut-brain chips. The importance of these systems for understanding pathophysiology and developing new drugs is emphasized throughout the review. This article also addresses future directions and present issues with the advancement and application of gut-brain-on-a-chip technologies.

摘要

大脑和肠道是负责感知、传递、整合和响应来自内部和外部环境信号的感觉器官。深入分析大脑-肠道轴的相互作用对于人类健康和疾病预防至关重要。目前对大脑-肠道轴的研究主要依赖于动物模型。然而,由于固有物种差异,动物模型使得研究疾病机制变得困难,并且由于个体动物的变异,实验的可重复性较差,这导致实时感觉反应受到显著限制。器官芯片平台通过在体外复制大脑和肠道生态系统,为疾病治疗和个性化研究提供了一种创新方法。这使我们能够精确地了解它们的生物学功能和生理反应。本文探讨了大脑、肠道和肠道-大脑芯片的历史和最新发展。本文还强调了这些系统对于理解病理生理学和开发新药的重要性。本文还讨论了未来的方向以及肠道-大脑芯片技术的发展和应用中存在的问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0291/11503250/53aa51bcf0c3/CPR-57-e13724-g004.jpg

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