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Gut-brain axis metabolic pathway regulates antidepressant efficacy of albiflorin

机译:肠脑轴代谢途径调节白花素的抗抑郁功效

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The gut microbiota is increasingly recognized to influence brain function through the gut-brain axis. Albiflorin, an antidepressant natural drug in China with a good safety profile, is difficult to absorb and cannot be detected in the brain after oral administration. Accordingly, the antidepressant mechanism of albiflorin in vivo has not been elucidated clearly. Methods: We identified benzoic acid as the characteristic metabolite of albiflorin in vivo and in vitro , then discovered the roles of gut microbiota in the conversion of albiflorin by carboxylesterase . Pharmacodynamic and pharmacokinetic studies were performed for the antidepressant activities of albiflorin in animals, and the efficacy of benzoic acid in inhibiting D-amino acid oxidase (DAAO) in brain was further investigated. Results: We validated that gut microbiota transformed albiflorin to benzoic acid, a key metabolite in the intestine that could cross the blood-brain barrier and, as an inhibitor of DAAO in the brain, improved brain function and exerted antidepressant activity in vivo . Intestinal carboxylesterase was the crucial enzyme that generated benzoic acid from albiflorin. Additionally, the regulatory effect of albiflorin on the gut microbiota composition was beneficial to alleviate depression. Conclusion: Our findings suggest a novel gut-brain dialogue through intestinal benzoic acid for the treatment of depression and reveal that the gut microbiota may play a causal role in the pathogenesis and treatment of the central nervous system disease.
机译:人们越来越认识到肠道菌群可通过肠脑轴影响大脑功能。白花素是中国的一种抗抑郁天然药物,具有良好的安全性,口服后难以吸收并且在大脑中无法检测到。因此,尚未明确阐明体内白花素的抗抑郁机制。方法:我们在体内和体外鉴定苯甲酸为白花素的特征代谢产物,然后发现肠道菌群在羧酸酯酶转化白花素中的作用。进行了药理作用和药代动力学研究,以研究动物中白花素的抗抑郁活性,并进一步研究了苯甲酸抑制脑中D-氨基酸氧化酶(DAAO)的功效。结果:我们验证了肠道菌群将白花素转化为苯甲酸,这是肠道中的关键代谢产物,可以穿过血脑屏障,并且作为脑中DAAO的抑制剂,可以改善脑功能并在体内发挥抗抑郁活性。肠道内的羧酸酯酶是从白花素生成苯甲酸的关键酶。另外,白花素对肠道菌群组成的调节作用有利于减轻抑郁。结论:我们的发现表明通过肠中苯甲酸的新型肠脑对话可治疗抑郁症,并揭示了肠道菌群可能在中枢神经系统疾病的发病机理和治疗中起着因果作用。

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