von Martels Julius Z H, Sadaghian Sadabad Mehdi, Bourgonje Arno R, Blokzijl Tjasso, Dijkstra Gerard, Faber Klaas Nico, Harmsen Hermie J M
Department of Gastroenterology and Hepatology, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.
Department of Medical Microbiology, University of Groningen, University Medical Center Groningen, Groningen, The Netherlands.
Anaerobe. 2017 Apr;44:3-12. doi: 10.1016/j.anaerobe.2017.01.001. Epub 2017 Jan 3.
The microbiota of the gut has many crucial functions in human health. Dysbiosis of the microbiota has been correlated to a large and still increasing number of diseases. Recent studies have mostly focused on analyzing the associations between disease and an aberrant microbiota composition. Functional studies using (in vitro) gut models are required to investigate the precise interactions that occur between specific bacteria (or bacterial mixtures) and gut epithelial cells. As most gut bacteria are obligate or facultative anaerobes, studying their effect on oxygen-requiring human gut epithelial cells is technically challenging. Still, several (anaerobic) bacterial-epithelial co-culture systems have recently been developed that mimic host-microbe interactions occurring in the human gut, including 1) the Transwell "apical anaerobic model of the intestinal epithelial barrier", 2) the Host-Microbiota Interaction (HMI) module, 3) the "Human oxygen-Bacteria anaerobic" (HoxBan) system, 4) the human gut-on-a-chip and 5) the HuMiX model. This review discusses the role of gut microbiota in health and disease and gives an overview of the characteristics and applications of these novel host-microbe co-culture systems.
肠道微生物群在人类健康中具有许多关键功能。微生物群失调已与大量且仍在增加的疾病相关联。最近的研究大多集中在分析疾病与异常微生物群组成之间的关联。需要使用(体外)肠道模型进行功能研究,以调查特定细菌(或细菌混合物)与肠道上皮细胞之间发生的精确相互作用。由于大多数肠道细菌是专性或兼性厌氧菌,研究它们对需要氧气的人类肠道上皮细胞的影响在技术上具有挑战性。尽管如此,最近还是开发了几种(厌氧)细菌 - 上皮共培养系统,它们模拟了人类肠道中发生的宿主 - 微生物相互作用,包括1)Transwell“肠道上皮屏障顶端厌氧模型”,2)宿主 - 微生物群相互作用(HMI)模块,3)“人类需氧 - 细菌厌氧”(HoxBan)系统,4)肠道芯片和5)HuMiX模型。本综述讨论了肠道微生物群在健康和疾病中的作用,并概述了这些新型宿主 - 微生物共培养系统的特点和应用。