Wang Mengting, Mao Haiguang, Chen Jianchu, Qi Lili, Wang Jinbo
School of Biological and Chemical Engineering, NingboTech University, Ningbo, China.
College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, China.
Front Pharmacol. 2022 Sep 15;13:1008580. doi: 10.3389/fphar.2022.1008580. eCollection 2022.
Bayberry leaves proanthocyanidins (BLPs) were distributed in natural plant food, considered to have the potential for metabolic syndrome. In this study, we raised on high sugar diet (HSD) from the egg stage to induce hyperglycemia, and the ameliorative effect of BLPs was assessed based on this model. Phenotypical, biochemical, and molecular analyses related to diabetes mellitus pathogenesis were measured. Flies exposed to BLPs were found to suppress the HSD-induced high glucose and high triglycerides levels. Moreover, BLPs showed an inhibitory effect on carbohydrate digestive enzymes (α-amylase and α-glucosidase) activity and mRNA expression, exhibiting the potential for carbohydrate digestion retardation. Transcriptional levels of key genes associated with glycolipid metabolism were further evaluated, including , and downstream , together with , , , and genes, were all downregulated after BLPs-exposure, suggesting the ameliorative effect of BLPs on dysbiosis associated with the insulin signaling pathway. This study provided a new functional compound, which is beneficial to further antidiabetic therapy studies.
杨梅叶原花青素(BLPs)分布于天然植物性食物中,被认为具有改善代谢综合征的潜力。在本研究中,我们从卵期开始用高糖饮食(HSD)饲养以诱导高血糖,并基于该模型评估BLPs的改善作用。测定了与糖尿病发病机制相关的表型、生化和分子分析指标。发现暴露于BLPs的果蝇可抑制HSD诱导的高血糖和高甘油三酯水平。此外,BLPs对碳水化合物消化酶(α-淀粉酶和α-葡萄糖苷酶)的活性和mRNA表达具有抑制作用,显示出延缓碳水化合物消化的潜力。进一步评估了与糖脂代谢相关的关键基因的转录水平,包括 、 和下游的 ,以及 、 、 和 基因,暴露于BLPs后均下调,表明BLPs对与胰岛素信号通路相关的生态失调具有改善作用。本研究提供了一种新的功能性化合物,有利于进一步开展抗糖尿病治疗研究。