Malaguarnera Giulia, Graute Miriam, Homs Corbera Antoni
R&D department, Cherry Biotech SAS, Rennes, Brittany, 35000, France.
Open Res Eur. 2023 Jan 18;1:62. doi: 10.12688/openreseurope.13709.2. eCollection 2021.
It is difficult to model the intestine when seeking to include crosstalk with the gut microbiota, immune and neuroendocrine systems. Here we present a roadmap of the current models to facilitate the choice in preclinical and translational research with a focus on gut-on-chip. These micro physiological systems (MPS) are microfluidic devices that recapitulate the physiology of the intestine. We reviewed the gut-on-chips that had been developed in academia and industries as single chip and that have three main purpose: replicate the intestinal physiology, the intestinal pathological features, and for pharmacological tests.
当试图纳入与肠道微生物群、免疫系统和神经内分泌系统的相互作用时,很难对肠道进行建模。在此,我们展示了当前模型的路线图,以促进临床前和转化研究中的选择,重点是肠道芯片。这些微生理系统(MPS)是概括肠道生理学的微流控设备。我们回顾了学术界和工业界开发的作为单芯片的肠道芯片,其有三个主要用途:复制肠道生理学、肠道病理特征以及用于药理学测试。