Jiangsu Province Key Laboratory of Drug Metabolism and Pharmacokinetics, State Key Laboratory of Natural Medicines, China Pharmaceutical University, Nanjing, 210009, China.
Innovation Research Institute of Traditional Chinese Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, 201203, China.
Acta Pharmacol Sin. 2020 Jan;41(1):73-81. doi: 10.1038/s41401-019-0279-8. Epub 2019 Aug 19.
Kaempferol is a natural flavonol that possesses various pharmacological activities, including anti-arthritis effects, yet the underlying mechanisms remain controversial. To evaluate the anti-arthritis efficacy and the underlying mechanisms of kaempferol, collagen-induced arthritis (CIA) mice were treated with kaempferol intragastrically (200 mg · kg · d) and intraperitoneally (20 mg · kg · d). Pharmacodynamic and pharmacokinetic studies showed that the oral administration of kaempferol produced distinct anti-arthritis effects in model mice with arthritis in terms of the spleen index, arthritis index, paw thickness, and inflammatory factors; the bioavailability (1.5%, relative to that of the intraperitoneal injection) and circulatory exposure of kaempferol (C = 0.23 ± 0.06 ng/mL) and its primary metabolite kaempferol-3-O-glucuronide (C = 233.29 ± 89.64 ng/mL) were rather low. In contrast, the intraperitoneal injection of kaempferol caused marginal anti-arthritis effects, although it achieved a much higher in vivo exposure. The much higher kaempferol content in the gut implicated a potential mechanism involved in the gut. Analysis of 16S ribosomal RNA revealed that CIA caused imbalance of 14 types of bacteria at the family level, whereas kaempferol largely rebalanced the intestinal microbiota in CIA mice. A metabolomics study showed that kaempferol treatment significantly reversed the perturbation of metabolites involved in energy production and the tryptophan, fatty acid and secondary bile acid metabolisms in the gut contents of the CIA mice. In conclusion, we demonstrate for the first time that the high level of kaempferol in the gut regulates the intestinal flora and microbiotic metabolism, which are potentially responsible for the anti-arthritis activities of kaempferol.
山奈酚是一种天然类黄酮,具有多种药理活性,包括抗关节炎作用,但作用机制仍存在争议。为了评估山奈酚的抗关节炎疗效及其作用机制,将胶原诱导性关节炎(CIA)小鼠用山奈酚进行灌胃(200mg·kg·d)和腹腔注射(20mg·kg·d)治疗。药效学和药代动力学研究表明,口服山奈酚可明显改善关节炎模型小鼠的关节炎指数、爪厚、脾指数和炎症因子,具有抗关节炎作用;山奈酚的生物利用度(相对于腹腔注射的 1.5%)和循环暴露量(C=0.23±0.06ng/mL)及其主要代谢产物山奈酚-3-O-葡萄糖醛酸(C=233.29±89.64ng/mL)均较低。相比之下,腹腔注射山奈酚虽能达到更高的体内暴露量,但抗关节炎作用却很轻微。肠道中可能存在一种与山奈酚含量较高有关的潜在机制。16S 核糖体 RNA 分析显示,CIA 导致 14 种细菌家族水平失衡,而山奈酚则在 CIA 小鼠中很大程度上重新平衡了肠道微生物群。代谢组学研究表明,山奈酚治疗可显著逆转 CIA 小鼠肠道内容物中与能量产生、色氨酸、脂肪酸和次级胆酸代谢相关的代谢物的紊乱。总之,我们首次证明了肠道中高浓度的山奈酚可调节肠道菌群和微生物代谢,这可能是山奈酚发挥抗关节炎作用的原因。