Yang Letao, Hung Lin Y, Zhu Yuefei, Ding Suwan, Margolis Kara G, Leong Kam W
Department of Biomedical Engineering, Columbia University, New York, NY, USA.
Department of Pediatrics, Columbia University, New York, New York, USA.
Research (Wash D C). 2022 Jul 20;2022:9804014. doi: 10.34133/2022/9804014. eCollection 2022.
Tremendous progress has been made in the past decade regarding our understanding of the gut microbiome's role in human health. Currently, however, a comprehensive and focused review marrying the two distinct fields of gut microbiome and material research is lacking. To bridge the gap, the current paper discusses critical aspects of the rapidly emerging research topic of "material engineering in the gut microbiome and human health." By engaging scientists with diverse backgrounds in biomaterials, gut-microbiome axis, neuroscience, synthetic biology, tissue engineering, and biosensing in a dialogue, our goal is to accelerate the development of research tools for gut microbiome research and the development of therapeutics that target the gut microbiome. For this purpose, state-of-the-art knowledge is presented here on biomaterial technologies that facilitate the study, analysis, and manipulation of the gut microbiome, including intestinal organoids, gut-on-chip models, hydrogels for spatial mapping of gut microbiome compositions, microbiome biosensors, and oral bacteria delivery systems. In addition, a discussion is provided regarding the microbiome-gut-brain axis and the critical roles that biomaterials can play to investigate and regulate the axis. Lastly, perspectives are provided regarding future directions on how to develop and use novel biomaterials in gut microbiome research, as well as essential regulatory rules in clinical translation. In this way, we hope to inspire research into future biomaterial technologies to advance gut microbiome research and gut microbiome-based theragnostics.
在过去十年里,我们对肠道微生物群在人类健康中所起作用的理解取得了巨大进展。然而,目前缺乏一篇将肠道微生物群和材料研究这两个不同领域结合起来的全面且有针对性的综述。为了弥补这一差距,本文讨论了“肠道微生物群与人类健康中的材料工程”这一迅速兴起的研究课题的关键方面。通过让生物材料、肠道微生物群轴、神经科学、合成生物学、组织工程和生物传感等不同背景的科学家进行对话,我们的目标是加速用于肠道微生物群研究的工具开发以及针对肠道微生物群的治疗方法的开发。为此,本文介绍了促进肠道微生物群研究、分析和操控的生物材料技术的最新知识,包括肠道类器官、芯片肠道模型、用于肠道微生物群组成空间映射的水凝胶、微生物群生物传感器以及口服细菌递送系统。此外,还讨论了微生物群 - 肠道 - 脑轴以及生物材料在研究和调节该轴方面可以发挥的关键作用。最后,就如何在肠道微生物群研究中开发和使用新型生物材料的未来方向以及临床转化中的基本监管规则提供了观点。通过这种方式,我们希望激发对未来生物材料技术的研究,以推动肠道微生物群研究和基于肠道微生物群的治疗诊断学发展。