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Recent Advances in Gut- and Gut-Organ-Axis-on-a-Chip Models
WEB OF SCIENCE
32SCOPUS
45초록
The human gut extracts nutrients from the diet while forming the largest barrier against the outer environment. In addition, the gut actively maintains homeostasis through intricate interactions with the gut microbes, the immune system, the enteric nervous system, and other organs. These interactions influence digestive health and, furthermore, play crucial roles in systemic health and disease. Given its primary role in absorbing and metabolizing orally administered drugs, there is significant interest in the development of preclinical in vitro model systems that can accurately emulate the intestine in vivo. A gut-on-a-chip system holds great potential as a testing and screening platform because of its ability to emulate the physiological aspects of in vivo tissues and expandability to incorporate and combine with other organs. This review aims to identify the key physiological features of the human gut that need to be incorporated to build more accurate preclinical models and highlights the recent progress in gut-on-a-chip systems and competing technologies toward building more physiologically relevant preclinical model systems. Furthermore, various efforts to construct multi-organ systems with the gut, called gut-organ-axis-on-a-chip models, are discussed. In vitro gut models with physiological relevance can provide valuable platforms for bridging the gap between preclinical and clinical studies. In vitro intestinal models have evolved to mimic complex physiological factors in the human intestine and their interactions with other organs. This review highlights the recent advances in gut-on-a-chip models and non-fluidic in vitro intestinal model systems to provide perspectives on the future direction of gut-on-a-chip models. Moreover, recent developments in gut-organ-axis-on-a-chip models are discussed. image
키워드
- 제목
- Recent Advances in Gut- and Gut-Organ-Axis-on-a-Chip Models
- 저자
- Kim, Raehyun; Sung, Jong Hwan
- 발행일
- 2024-02-03
- 유형
- Review
- 권
- 13
- 호
- 21