Food Science and Technology Program, BNU-HKBU United International College, Zhuhai, Guangdong, China.
Department of Food Science and Technology, National University of Singapore, Singapore, Singapore.
Crit Rev Food Sci Nutr. 2023 Nov;63(33):12372-12397. doi: 10.1080/10408398.2022.2101425. Epub 2022 Jul 22.
Diabetes mellitus (DM) is a long-term metabolic disorder that manifests as chronic hyperglycemia and impaired insulin, bringing a heavy load on the global health care system. Considering the inevitable side effects of conventional anti-diabetic drugs, saponins-rich natural products exert promising therapeutic properties to serve as safer and more cost-effective alternatives for DM management. Herein, this review systematically summarized the research progress on the anti-diabetic properties of dietary saponins and their underlying molecular mechanisms in the past 20 years. Dietary saponins possessed the multidirectional anti-diabetic capabilities by concurrent regulation of various signaling pathways, such as IRS-1/PI3K/Akt, AMPK, Nrf2/ARE, NF-κB-NLRP3, SREBP-1c, and PPARγ, in liver, pancreas, gut, and skeletal muscle. However, the industrialization and commercialization of dietary saponin-based drugs are confronted with a significant challenge due to the low bioavailability and lack of the standardization. Hence, in-depth evaluations in pharmacological profile, function-structure interaction, drug-signal pathway interrelation are essential for developing dietary saponins-based anti-diabetic treatments in the future.
糖尿病(DM)是一种长期的代谢紊乱,表现为慢性高血糖和胰岛素功能受损,给全球医疗保健系统带来了沉重负担。考虑到传统抗糖尿病药物不可避免的副作用,富含皂素的天然产物具有有前景的治疗特性,可以作为 DM 管理更安全、更具成本效益的替代药物。本文系统总结了过去 20 年饮食皂素在抗糖尿病方面的研究进展及其潜在的分子机制。饮食皂素通过同时调节 IRS-1/PI3K/Akt、AMPK、Nrf2/ARE、NF-κB-NLRP3、SREBP-1c 和 PPARγ 等多种信号通路,具有多方位的抗糖尿病能力,在肝脏、胰腺、肠道和骨骼肌中均有作用。然而,由于生物利用度低且缺乏标准化,基于饮食皂素的药物的产业化和商业化面临着重大挑战。因此,深入评估药理学特征、功能-结构相互作用、药物信号通路相互关系对于未来开发基于饮食皂素的抗糖尿病治疗方法至关重要。