Department of Physiology, Johns Hopkins University School of Medicine, Baltimore, Maryland 21205, USA; email:
Annu Rev Nutr. 2019 Aug 21;39:75-94. doi: 10.1146/annurev-nutr-082018-124242. Epub 2019 May 31.
Many metals have biological functions and play important roles in human health. Copper (Cu) is an essential metal that supports normal cellular physiology. Significant research efforts have focused on identifying the molecules and pathways involved in dietary Cu uptake in the digestive tract. The lack of an adequate in vitro model for assessing Cu transport processes in the gut has led to contradictory data and gaps in our understanding of the mechanisms involved in dietary Cu acquisition. The recent development of organoid technology has provided a tractable model system for assessing the detailed mechanistic processes involved in Cu utilization and transport in the context of nutrition. Enteroid (intestinal epithelial organoid)-based studies have identified new links between intestinal Cu metabolism and dietary fat processing. Evidence for a metabolic coupling between the dietary uptake of Cu and uptake of fat (which were previously thought to be independent) is a new and exciting finding that highlights the utility of these three-dimensional primary culture systems. This review has three goals: () to critically discuss the roles of key Cu transport enzymes in dietary Cu uptake; () to assess the use, utility, and limitations of organoid technology in research into nutritional Cu transport and Cu-based diseases; and () to highlight emerging connections between nutritional Cu homeostasis and fat metabolism.
许多金属具有生物功能,在人类健康中发挥着重要作用。铜(Cu)是一种必需的金属,支持正常的细胞生理学。大量的研究工作集中在鉴定参与消化道中膳食 Cu 摄取的分子和途径上。缺乏评估肠道中 Cu 转运过程的充分体外模型,导致数据相互矛盾,我们对参与膳食 Cu 摄取的机制的理解存在空白。类器官技术的最新发展为评估营养背景下 Cu 利用和转运所涉及的详细机制过程提供了一个易于处理的模型系统。基于肠类器官(肠道上皮类器官)的研究确定了肠道 Cu 代谢与膳食脂肪处理之间的新联系。饮食中 Cu 摄取和脂肪摄取(以前被认为是相互独立的)之间存在代谢偶联的证据是一个新的令人兴奋的发现,突出了这些三维原代培养系统的实用性。本综述有三个目标:(i)批判性地讨论关键 Cu 转运酶在膳食 Cu 摄取中的作用;(ii)评估类器官技术在研究营养 Cu 转运和基于 Cu 的疾病中的应用、实用性和局限性;(iii)强调营养性 Cu 动态平衡与脂肪代谢之间的新联系。