Yu Zhewei, Zhang Yi, Wang Wenhui, Wu XinYi, Liu Shunzhi, Bin Yanlin, Li Hongsheng, Cai Bangping, Wang Zheng, Fang Meijuan, Qi Rong, Li Mingyu, Qiu Yingkun. Novel araucarene diterpenes from Agathis dammara exert hypoglycemic activity by promoting pancreatic β cell regeneration and glucose uptake[J]. Chinese Journal of Natural Medicines, 2025, 23(4): 492-503. DOI: 10.1016/S1875-5364(25)60856-9
Citation: Yu Zhewei, Zhang Yi, Wang Wenhui, Wu XinYi, Liu Shunzhi, Bin Yanlin, Li Hongsheng, Cai Bangping, Wang Zheng, Fang Meijuan, Qi Rong, Li Mingyu, Qiu Yingkun. Novel araucarene diterpenes from Agathis dammara exert hypoglycemic activity by promoting pancreatic β cell regeneration and glucose uptake[J]. Chinese Journal of Natural Medicines, 2025, 23(4): 492-503. DOI: 10.1016/S1875-5364(25)60856-9

Novel araucarene diterpenes from Agathis dammara exert hypoglycemic activity by promoting pancreatic β cell regeneration and glucose uptake

  • In this study, araucarene diterpenes, characterized by a pimarene skeleton with a variably oxidized side chain at C-13, were investigated. A total of 16 araucarene diterpenoids and their derivatives were isolated from the woods of Agathis dammara, including 11 previously unreported compounds: dammaradione (1), dammarones D−G (2, 5, 14, 15), dammaric acids B−F (812), and dammarol (16). The structures of these new compounds were elucidated using high-resolution electrospray ionization mass spectroscopy (HR-ESI-MS) and one-dimensional/two-dimensional (1D/2D) nuclear magnetic resonance (NMR), while their absolute configurations were determined through the electronic circular dichroism (ECD) exciton chirality method and Snatzke’s method. The hypoglycemic activity of all isolated compounds was evaluated using a transgenic zebrafish model, and a structure–activity relationship (SAR) analysis was conducted. Araucarone (3) and dammaric acid C (9), serving as representative compounds, demonstrated significant hypoglycemic effects on zebrafish. The primary mechanism involves the promotion of pancreatic β cell regeneration and glucose uptake. Specifically, these compounds enhance the differentiation of pancreatic endocrine precursor cells (PEP cells) into β cells in zebrafish.
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