Ma Quantao, Li Yaqi, Zhao Ruixue, Tang Ziyan, Li Jialin, Chen Cong, Liu Xiaoyao, Hu Yujie, Wang Ting, Zhao Baosheng
School of Traditional Chinese Medicine, Beijing University of Chinese Medicine, Beijing, China.
School of Chinese Materia Medica, Beijing University of Chinese Medicine, Beijing, China.
Front Pharmacol. 2022 Aug 30;13:954477. doi: 10.3389/fphar.2022.954477. eCollection 2022.
Type 2 diabetes (T2D) is considered as one of the most significant metabolic syndromes worldwide, and the long-term use of the drugs already on the market for T2D often gives rise to some side effects. The mulberry leaf (ML), , has advantages in terms of its comprehensive therapeutic efficacy, which are characterized as multicomponent, multitarget, multipathway, and matching with the complex pathological mechanisms of diabetes. T2D rats were established by a high-fat diet combined with an intraperitoneal injection of streptozotocin; an evaluation of the hypoglycemic effects of the ML in combination with fasting blood glucose and other indicators, in addition to the utilization of metabolomics technology, was performed to analysis the metabolite changes in serum of rats. MLs significantly reduced the fasting blood glucose of T2D rats, while improving the symptoms of polyphagia and polyuria. ML treatment altered the levels of various metabolites in the serum of T2D rats, which are involved in multiple metabolic pathways (amino acid metabolism, carbohydrate metabolism, and lipid metabolism), played a role in antioxidative stress and anti-inflammation, modulated immune and gluconeogenesis processes, and improved obesity as well as insulin resistance (IR). The ML contains a variety of chemical components, and metabolomic results have shown that MLs regulate multiple metabolic pathways to exert hypoglycemic effects, suggesting that MLs may have great promise in the development of new hypoglycemic drugs.
2型糖尿病(T2D)被认为是全球最重要的代谢综合征之一,长期使用市面上已有的T2D药物往往会产生一些副作用。桑叶(ML)在综合治疗效果方面具有优势,其特点是多成分、多靶点、多途径,与糖尿病复杂的病理机制相匹配。通过高脂饮食联合腹腔注射链脲佐菌素建立T2D大鼠模型;除利用代谢组学技术外,结合空腹血糖和其他指标对ML的降血糖作用进行评估,以分析大鼠血清中的代谢物变化。ML显著降低了T2D大鼠的空腹血糖,同时改善了多食和多尿症状。ML治疗改变了T2D大鼠血清中多种代谢物的水平,这些代谢物参与多种代谢途径(氨基酸代谢、碳水化合物代谢和脂质代谢),在抗氧化应激和抗炎中发挥作用,调节免疫和糖异生过程,并改善肥胖以及胰岛素抵抗(IR)。ML含有多种化学成分,代谢组学结果表明ML调节多种代谢途径以发挥降血糖作用,这表明ML在开发新型降血糖药物方面可能具有很大潜力。