Department of Molecular and Structural Biochemistry, North Carolina State University, 128 Polk Hall Campus, Box 7622, Raleigh, NC 27695, USA.
Biomolecules. 2024 Jul 13;14(7):845. doi: 10.3390/biom14070845.
Elevations in fructose consumption have been reported to contribute significantly to an increased incidence of obesity and metabolic diseases in industrial countries. Mechanistically, a high fructose intake leads to the dysregulation of glucose, triglyceride, and cholesterol metabolism in the liver, and causes elevations in inflammation and drives the progression of nonalcoholic fatty liver disease (NAFLD). A high fructose consumption is considered to be toxic to the body, and there are ongoing measures to develop pharmaceutical therapies targeting fructose metabolism. Although a large amount of work has summarized the effects fructose exposure within the intestine, liver, and kidney, there remains a gap in our knowledge regarding how fructose both indirectly and directly influences immune cell recruitment, activation, and function in metabolic tissues, which are essential to tissue and systemic inflammation. The most recent literature demonstrates that direct fructose exposure regulates oxidative metabolism in macrophages, leading to inflammation. The present review highlights (1) the mechanisms by which fructose metabolism impacts crosstalk between tissues, nonparenchymal cells, microbes, and immune cells; (2) the direct impact of fructose on immune cell metabolism and function; and (3) therapeutic targets of fructose metabolism to treat NAFLD. In addition, the review highlights how fructose disrupts liver tissue homeostasis and identifies new therapeutic targets for treating NAFLD and obesity.
果糖摄入量的增加据报道是导致肥胖和代谢疾病在工业化国家发病率上升的一个重要因素。从机制上讲,高果糖摄入会导致肝脏葡萄糖、甘油三酯和胆固醇代谢失调,并引起炎症升高,促使非酒精性脂肪性肝病(NAFLD)的进展。高果糖的摄入被认为对身体有毒,目前正在采取措施开发针对果糖代谢的药物治疗方法。尽管大量的工作已经总结了果糖在肠道、肝脏和肾脏中的作用,但我们对于果糖如何间接和直接影响代谢组织中免疫细胞的募集、激活和功能仍知之甚少,而这对于组织和全身炎症是至关重要的。最近的文献表明,果糖的直接暴露会调节巨噬细胞中的氧化代谢,导致炎症。本综述重点介绍了(1)果糖代谢影响组织、非实质细胞、微生物和免疫细胞之间串扰的机制;(2)果糖对免疫细胞代谢和功能的直接影响;(3)果糖代谢治疗 NAFLD 的治疗靶点。此外,该综述还强调了果糖如何破坏肝脏组织的内稳态,并确定了治疗 NAFLD 和肥胖的新治疗靶点。