药品
人肝
芯片上器官
药理学
肝毒性
生物
药物发现
医学
化学
毒性
生物信息学
纳米技术
内科学
酶
生物化学
材料科学
微流控
作者
Kyung‐Jin Jang,Monicah A. Otieno,Janey Ronxhi,Heng‐Keang Lim,Lorna Ewart,Konstantia Kodella,Debora B. Petropolis,Gauri Kulkarni,Jonathan E. Rubins,David Conegliano,Janna Nawroth,Damir Simic,Wing Lam,Monica Singer,Erio Barale-Thomas,Bhanu Singh,Manisha Sonee,Anthony J. Streeter,Carl L. Manthey,Barry Jones
标识
DOI:10.1126/scitranslmed.aax5516
摘要
Nonclinical rodent and nonrodent toxicity models used to support clinical trials of candidate drugs may produce discordant results or fail to predict complications in humans, contributing to drug failures in the clinic. Here, we applied microengineered Organs-on-Chips technology to design a rat, dog, and human Liver-Chip containing species-specific primary hepatocytes interfaced with liver sinusoidal endothelial cells, with or without Kupffer cells and hepatic stellate cells, cultured under physiological fluid flow. The Liver-Chip detected diverse phenotypes of liver toxicity, including hepatocellular injury, steatosis, cholestasis, and fibrosis, and species-specific toxicities when treated with tool compounds. A multispecies Liver-Chip may provide a useful platform for prediction of liver toxicity and inform human relevance of liver toxicities detected in animal studies to better determine safety and human risk.
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