首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Identification of Dihydromyricetin and Metabolites in Serum and Brain Associated with Acute Anti-Ethanol Intoxicating Effects in Mice
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Identification of Dihydromyricetin and Metabolites in Serum and Brain Associated with Acute Anti-Ethanol Intoxicating Effects in Mice

机译:血清和脑中急性抗乙醇毒害毒性毒性毒性毒性尿素和脑的代谢物的鉴定

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摘要

Dihydromyricetin is a natural bioactive flavonoid with unique GABAA receptor activity with a putative mechanism of action to reduce the intoxication effects of ethanol. Although dihydromyricetin’s poor oral bioavailability limits clinical utility, the promise of this mechanism for the treatment of alcohol use disorder warrants further investigation into its specificity and druggable potential. These experiments investigated the bioavailability of dihydromyricetin in the brain and serum associated with acute anti-intoxicating effects in C57BL/6J mice. Dihydromyricetin (50 mg/kg IP) administered 0 or 15-min prior to ethanol (PO 5 g/kg) significantly reduced ethanol-induced loss of righting reflex. Total serum exposures (AUC0→24) of dihydromyricetin (PO 50 mg/kg) via oral (PO) administration were determined to be 2.5 µM × h (male) and 0.7 µM × h (female), while intraperitoneal (IP) administration led to 23.8-fold and 7.2- increases in AUC0→24 in male and female mice, respectively. Electrophysiology studies in α5β3γ2 GABAA receptors expressed in Xenopus oocytes suggest dihydromyricetin (10 µM) potentiates GABAergic activity (+43.2%), and the metabolite 4-O-methyl-dihydromyricetin (10 µM) negatively modulates GABAergic activity (−12.6%). Our results indicate that administration route and sex significantly impact DHM bioavailability in mice, which is limited by poor absorption and rapid clearance. This correlates with the observed short duration of DHM’s anti-intoxicating properties and highlights the need for further investigation into mechanism of DHM’s potential anti-intoxicating properties.
机译:二氢钠素是一种天然生物活性黄酮,具有独特的GABAA受体活性,具有调整的作用机制,以减少乙醇的中毒作用。虽然二氢霉素差的口腔生物利用度限制了临床效用,但这种机制治疗酒精使用障碍的承诺需要进一步调查其特异性和可药用潜力。这些实验研究了在C57BL / 6J小鼠中与急性抗毒害作用相关的脑和血清中的二氢霉素的生物利用度。在乙醇(PO 5g / kg)之前施用0或15分钟的二氢钠(50mg / kg IP)显着降低了乙醇诱导的抗衡反射丧失。通过口服(PO)给药(PO)给药的二氢钠(PO 50mg / kg)的总血清暴露(Auc0→24)为2.5μm×h(雄性)和0.7μm×h(雌性),而腹膜内(IP)给予LED分别为23.8倍,分别增加了男性和女性小鼠的AUC0→24。在外脓卵母细胞中表达的α5β3γ2的α5β3γ2的电生理学研究表明二氢脲素(10μm)增强蛋白(10μm)增强剂活性(+ 43.2%),代谢物4-O-甲基二氢钠(10μm)负调节胃肠杆菌活性(-12.6%)。我们的结果表明,给药途径和性别会显着影响小鼠的DHM生物利用度,这受到差的吸收和快速间隙的限制。这种情况与观察到的DHM抗毒性特性的短暂持续时间相关,并突出了进一步调查DHM潜在的抗醉人性能的机制。

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