Environmental Microbiology and Biotechnology Laboratory, Engineering School of Environmental & Natural Resources, Engineering Faculty, Universidad del Valle-Sede Meléndez, Cali 76001, Colombia.
Australian National Phenome Centre and Computational and Systems Medicine, Health Futures Institute, Murdoch University, Harry Perkins Building, Perth, Western Australia WA6150, Australia.
J Agric Food Chem. 2022 Sep 21;70(37):11458-11467. doi: 10.1021/acs.jafc.2c03597. Epub 2022 Sep 12.
The evolution of complex in vitro models of the human gastrointestinal system to interrogate the biochemical functionality of the gut microbiome has augmented our understanding of its role in human physiology and pathology. With 5718 authors from 52 countries, gut bioreactor research reflects the growing awareness of our need to understand the contribution of the gut microbiome to human health. Although a large body of knowledge has been generated from in vitro models, it is scattered and defined by application-specific terminologies. To better grasp the capacity of bioreactors and further our knowledge of the human gastrointestinal system, we have conducted a cross-field bibliometric search and mapped the evolution of human gastrointestinal in vitro research. We present reference material with the aim of identifying key authors and bioreactor types to enable researchers to make decisions regarding the choice of method for simulating the human gut in the context of microbiome functionality.
复杂的体外人类胃肠道模型的发展,用于探究肠道微生物组的生化功能,增强了我们对其在人类生理学和病理学中作用的理解。肠道生物反应器研究反映了我们对理解肠道微生物组对人类健康贡献的认识的不断提高,该研究有来自 52 个国家的 5718 位作者。尽管体外模型已经产生了大量的知识,但这些知识分散且受到特定应用术语的限制。为了更好地了解生物反应器的能力并进一步了解人类胃肠道系统,我们进行了跨领域的文献计量学搜索,并绘制了人类胃肠道体外研究的演变图。我们提供参考资料,旨在确定关键作者和生物反应器类型,以便研究人员能够根据模拟微生物组功能的人类肠道的方法选择做出决策。