芯片上器官
疾病
功能(生物学)
机制(生物学)
肠道菌群
炎症性肠病
胃肠道
计算生物学
生物
生物信息学
医学
免疫学
纳米技术
细胞生物学
病理
内科学
认识论
哲学
材料科学
微流控
作者
Changxiu Xian,Jiaxin Zhang,Suqing Zhao,Xiangguang Li
标识
DOI:10.1177/20417314221149882
摘要
The intestinal tract is a vital organ responsible for digestion and absorption in the human body and plays an essential role in pathogen invasion. Compared with other traditional models, gut-on-a-chip has many unique advantages, and thereby, it can be considered as a novel model for studying intestinal functions and diseases. Based on the chip design, we can replicate the in vivo microenvironment of the intestine and study the effects of individual variables on the experiment. In recent years, it has been used to study several diseases. To better mimic the intestinal microenvironment, the structure and function of gut-on-a-chip are constantly optimised and improved. Owing to the complexity of the disease mechanism, gut-on-a-chip can be used in conjunction with other organ chips. In this review, we summarise the human intestinal structure and function as well as the development and improvement of gut-on-a-chip. Finally, we present and discuss gut-on-a-chip applications in inflammatory bowel disease (IBD), viral infections and phenylketonuria. Further improvement of the simulation and high throughput of gut-on-a-chip and realisation of personalised treatments are the problems that should be solved for gut-on-a-chip as a disease model.
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