Botta Amy, Barra Nicole G, Lam Nhat Hung, Chow Samantha, Pantopoulos Kostas, Schertzer Jonathan D, Sweeney Gary
Department of Biology, York University, Toronto, ON, Canada.
Department of Biochemistry and Biomedical Sciences, Farncombe Family Digestive Health Research Institute, Centre for Metabolism, Obesity and Diabetes Research, McMaster University, Hamilton, ON, Canada.
J Lipid Atheroscler. 2021 May;10(2):160-183. doi: 10.12997/jla.2021.10.2.160. Epub 2021 Mar 10.
Compelling studies have established that the gut microbiome is a modifier of metabolic health. Changes in the composition of the gut microbiome are influenced by genetics and the environment, including diet. Iron is a potential node of crosstalk between the host-microbe relationship and metabolic disease. Although iron is well characterized as a frequent traveling companion of metabolic disease, the role of iron is underappreciated because the mechanisms of iron's influence on host metabolism are poorly characterized. Both iron deficiency and excessive amounts leading to iron overload can have detrimental effects on cardiometabolic health. Optimal iron homeostasis is critical for regulation of host immunity and metabolism in addition to regulation of commensal and pathogenic enteric bacteria. In this article we review evidence to support the notion that altering composition of the gut microbiome may be an important route via which iron impacts cardiometabolic health. We discuss reshaping of the microbiome by iron, the physiological significance and the potential for therapeutic interventions.
有说服力的研究已证实,肠道微生物群是代谢健康的一个调节因素。肠道微生物群组成的变化受遗传因素和包括饮食在内的环境因素影响。铁是宿主-微生物关系与代谢疾病之间潜在的相互作用节点。尽管铁被充分认为是代谢疾病的常见伴发因素,但其作用却未得到充分重视,因为铁对宿主代谢影响的机制尚不清楚。缺铁和铁过量导致的铁过载都会对心脏代谢健康产生有害影响。除了调节共生和致病性肠道细菌外,最佳的铁稳态对于宿主免疫和代谢的调节也至关重要。在本文中,我们综述了相关证据,以支持改变肠道微生物群组成可能是铁影响心脏代谢健康的重要途径这一观点。我们讨论了铁对微生物群的重塑、生理意义以及治疗干预的潜力。