Modern Research Center for Traditional Chinese Medicine, Shanxi University, Taiyuan, China.
Shanxi Key Laboratory of Active Constituents Research and Utilization of TCM, Shanxi University, Taiyuan, China.
Mol Biol Rep. 2022 Sep;49(9):8801-8813. doi: 10.1007/s11033-022-07730-5. Epub 2022 Aug 24.
Saikosaponin A (SSA) and albiflorin (AF) are major bioactive compounds of Radix Bupleuri and Radix Paeoniae alba respectively, which possess antidepressant effects in pharmacological experiments. However, whether SSA and AF have synergistic neuroprotective effects and the synergistic mechanisms are still unknown.
The corticosterone-induced PC12 cells apoptosis model was employed to assess the neuroprotective effects of SSA and AF, and the synergistic effect was analyzed using three mathematical models. Meanwhile, cell metabolomics was used to detect the effects on metabolite regulation of SSA and AF. Furthermore, the key metabolites, metabolic enzymes, and cellular markers were verified by ELISA and Western blotting. The results showed that the combination of SSA and AF has a synergistic neuroprotective effect. Besides, the combination could regulate more metabolites than a single agent and possessed a stronger adjustment effect on metabolites. The TCA cycle was regulated by SSA and AF via improving mitochondrial function. The purine metabolism was regulated by SSA via inhibition xanthine oxidase activity and the glutamate metabolism was regulated by AF via inhibition glutaminase activity. Moreover, the oxidative stress induced by the purine metabolism was attenuated by SSA via a reduction in the ROS level. Additionally, the inflammation induced by the oxidative stress was attenuated by the SSA and AF via inhibition of the NLRP3 protein expression.
This study for the first time demonstrated the synergistic neuroprotective effects of SSA and AF, and the synergistic mechanisms were involved in metabolic disorders regulation and neuroinflammation inhibition.
柴胡皂苷 A(SSA)和白芍苷(AF)分别是柴胡和白芍的主要生物活性化合物,它们在药理学实验中具有抗抑郁作用。然而,SSA 和 AF 是否具有协同的神经保护作用及其协同机制尚不清楚。
采用皮质酮诱导的 PC12 细胞凋亡模型来评估 SSA 和 AF 的神经保护作用,并使用三种数学模型分析协同作用。同时,采用细胞代谢组学检测 SSA 和 AF 对代谢物调节的影响。此外,通过 ELISA 和 Western blot 验证关键代谢物、代谢酶和细胞标志物。结果表明,SSA 和 AF 联合使用具有协同的神经保护作用。此外,联合用药比单一药物能调节更多的代谢物,对代谢物的调节作用更强。SSA 和 AF 通过改善线粒体功能调节三羧酸循环。SSA 通过抑制黄嘌呤氧化酶活性调节嘌呤代谢,AF 通过抑制谷氨酰胺酶活性调节谷氨酸代谢。此外,SSA 通过降低 ROS 水平减轻嘌呤代谢引起的氧化应激。此外,SSA 和 AF 通过抑制 NLRP3 蛋白表达减轻由氧化应激引起的炎症。
本研究首次证实了 SSA 和 AF 的协同神经保护作用,其协同机制涉及代谢紊乱调节和神经炎症抑制。