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Deciphering the Differential Effective and Toxic Responses of Bupleuri Radix following the Induction of Chronic Unpredictable Mild Stress and in Healthy Rats Based on Serum Metabolic Profiles

机译:基于血清代谢谱分析,在健康大鼠中鉴定慢性慢性不可预测的轻度应激后柴胡不同的有效毒性反应和毒性反应

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The petroleum ether fraction of Bupleuri Radix which is contained in the traditional Chinese medicine prescription of Xiaoyaosan (XYS) may have a therapeutic effect in depressed subjects based on the results of our previous study. It has been reported that Bupleuri Radix can cause liver toxicity following overdosing or long-term use. Therefore, this study aimed to decipher the differential effective and toxic responses of Bupleuri Radix in chronic unpredictable mild stress (CUMS) (with depression) and healthy rats based on serum metabolic profiles. Serum metabolic profiles were obtained using the UHPLC- Q Exactive Orbitrap-MS technique. Our results demonstrated that the petroleum ether fraction of Bupleuri Radix (PBR) produces an antidepressant effect through regulating glycometabolism, amino acid metabolism, sphingolipid metabolism, glycerophospholipid metabolism, and fatty acid metabolism. It also induces more severe toxic reactions in the liver or kidney in healthy rats than in CUMS rats, which exhibited a comparatively mild drug-induced toxic reaction. The altered lysine degradation, sphingolipid metabolism, glycerophospholipid metabolism, fatty acid metabolism, and bile acid metabolism could be at least partly responsible for the PBR toxic responses in healthy rats. The differential effective and toxic response of PBR in CUMS rats and healthy rats provide a new standard for the more rational and safer application of clinical drugs in the future.
机译:根据我们先前研究的结果,逍遥散的中药处方(XYS)中包含的柴胡的石油醚级分可能对抑郁的受试者具有治疗作用。据报道,过量服用或长期使用后,柴胡可引起肝毒性。因此,本研究旨在根据血清代谢状况,对柴胡对慢性不可预测的轻度应激(CUMS)(伴有抑郁症)和健康大鼠的区别有效和毒性反应进行研究。使用UHPLC-Q Exactive Orbitrap-MS技术获得血清代谢状况。我们的研究结果表明柴胡(PBR)的石油醚馏分通过调节糖代谢,氨基酸代谢,鞘脂代谢,甘油磷脂代谢和脂肪酸代谢产生抗抑郁作用。与CUMS大鼠相比,它在健康大鼠的肝脏或肾脏中引起更严重的毒性反应,后者表现出相对温和的药物诱导的毒性反应。赖氨酸降解,鞘脂代谢,甘油磷脂代谢,脂肪酸代谢和胆汁酸代谢的改变可能至少部分负责健康大鼠的PBR毒性反应。 PBR在CUMS大鼠和健康大鼠中不同的有效毒性反应和毒性反应为将来更合理,更安全地使用临床药物提供了新的标准。

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