State Key Laboratory of Molecular Engineering of Polymers, Department of Macromolecular Science, Fudan University, Shanghai, 200433, China.
Yueyang Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, 200437, China.
Lipids Health Dis. 2023 Aug 8;22(1):120. doi: 10.1186/s12944-023-01880-6.
Obesity is often accompanied by metabolic disorder and insulin resistance, resulting in type 2 diabetes. Based on previous findings, FYGL, a natural hyperbranched proteoglycan extracted from the G. lucidum fruiting body, can decrease blood glucose and reduce body weight in diabetic mice. In this article, the underlying mechanism of FYGL in ameliorating obesity-induced diabetes was further investigated both in vivo and in vitro. FYGL upregulated expression of metabolic genes related to fatty acid biosynthesis, fatty acid β-oxidation and thermogenesis; downregulated the expression of insulin resistance-related genes; and significantly increased the number of beige adipocytes in db/db mice. In addition, FYGL inhibited preadipocyte differentiation of 3T3-L1 cells by increasing the expression of FABP-4. FYGL not only promoted fatty acid synthesis but also more significantly promoted triglyceride degradation and metabolism by activating the AMPK signalling pathway, therefore preventing fat accumulation, balancing adipocyte production and lipid metabolism, and regulating metabolic disorders and unhealthy obesity. FYGL could be used as a promising pharmacological agent for the treatment of metabolic disorder-related obesity.
肥胖常伴有代谢紊乱和胰岛素抵抗,导致 2 型糖尿病。基于先前的发现,FYGL,一种从灵芝子实体中提取的天然超支化蛋白聚糖,可降低糖尿病小鼠的血糖和体重。在本文中,FYGL 改善肥胖诱导的糖尿病的潜在机制在体内和体外都进行了进一步研究。FYGL 上调了与脂肪酸生物合成、脂肪酸β-氧化和产热相关的代谢基因的表达;下调了与胰岛素抵抗相关的基因的表达;并显著增加了 db/db 小鼠中米色脂肪细胞的数量。此外,FYGL 通过增加 FABP-4 的表达来抑制 3T3-L1 细胞的前体脂肪细胞分化。FYGL 不仅促进脂肪酸的合成,而且通过激活 AMPK 信号通路更显著地促进甘油三酯的降解和代谢,从而防止脂肪堆积、平衡脂肪细胞生成和脂质代谢,并调节代谢紊乱和不健康的肥胖。FYGL 可用作治疗与代谢紊乱相关的肥胖症的有前途的药物。