芯片上器官
人类健康
生物
毒理
计算生物学
药理学
医学
纳米技术
环境卫生
微流控
材料科学
作者
Yong Cheol Shin,Nam Than,Soo Jin Park,Hyun Jung Kim
标识
DOI:10.1080/17425255.2024.2365254
摘要
Gut-on-a-chip platforms can attract multiple end users as predictive, human-relevant, and non-clinical model. Notably, gut-on-a-chip platforms provide a unique opportunity to recreate a human intestinal microenvironment, including dynamic bowel movement, luminal flow, oxygen gradient, host-microbiome interactions, and disease-specific manipulations restricted in animal and in vitro cell culture models. Additionally, given the profound impact of the gut microbiome on pharmacological bioprocess, it is critical to leverage breakthroughs of gut-on-a-chip technology to address knowledge gaps and drive innovations in predictive drug toxicology and metabolism.
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