Fujimoto Masanori, Tanaka Tomoaki
Department of Molecular Diagnosis, Graduate School of Medicine, Chiba University, Chiba, Japan.
Department of Endocrinology, Hematology and Gerontology, Graduate School of Medicine, Chiba University, Chiba, Japan.
Endocr J. 2025 May 27. doi: 10.1507/endocrj.EJ25-0140.
Hepatic carbohydrate and lipid metabolism is strictly regulated by hormones such as insulin, glucagon, cortisol, and adrenaline, dynamically adapting to diet and stress. Metabolic zonation, a key feature of liver function, has been studied for decades. It refers to the spatial arrangement of hepatocytes with distinct metabolic roles along the portal-to-central vein axis, shaped by nutrient and oxygen gradients, as well as signaling molecules. However, traditional methods have struggled to reveal the spatial regulation of gene expression and signaling within these zones. Recent advances in single-cell and spatial omics technologies now allow detailed analysis of gene expression, signaling pathways, and cell-cell interactions with spatial resolution, providing new insights beyond classical models. Metabolic zonation research is rapidly advancing, and the concept of immune zonation, describing the spatial distribution of immune cells, has gained attention for its role in liver metabolism. These findings have improved our understanding of metabolic changes in conditions like fatty liver disease and diabetes. However, many questions remain, including the dynamic effects of diet and hormones and disease-related alterations. This review summarizes past and recent findings on metabolic zonation, explores the role of immune zonation and hormonal regulation, and discusses the latest technologies and future challenges.
肝脏碳水化合物和脂质代谢受到胰岛素、胰高血糖素、皮质醇和肾上腺素等激素的严格调控,能够动态适应饮食和应激状态。代谢分区作为肝功能的一个关键特征,已被研究数十年。它指的是肝细胞沿着门静脉到中央静脉轴具有不同代谢作用的空间排列,这种排列由营养物质和氧气梯度以及信号分子塑造而成。然而,传统方法一直难以揭示这些区域内基因表达和信号传导的空间调控机制。单细胞和空间组学技术的最新进展现在使得能够以空间分辨率对基因表达、信号通路以及细胞间相互作用进行详细分析,从而提供超越经典模型的新见解。代谢分区研究正在迅速推进,而描述免疫细胞空间分布的免疫分区概念因其在肝脏代谢中的作用而受到关注。这些发现增进了我们对脂肪肝疾病和糖尿病等病症中代谢变化的理解。然而,仍有许多问题存在,包括饮食和激素的动态影响以及与疾病相关的改变。本综述总结了代谢分区的过去和近期研究结果,探讨了免疫分区和激素调控的作用,并讨论了最新技术和未来挑战。