成人午夜sm精品久久久久久久-人人妻人人澡人人爽人人欧美一区-手机免费av-99久久久无码国产精品性波多-干爹你真棒插曲免费-国产免费自拍视频-xxfree性黑人hd4k高清-色资源在线-成人爱爱-中文字幕一区二区人妻痴汉电车-欧洲在线-天天射夜夜-三级黄色短视频-久久图库-二级生活片-男人的天堂成人-一区二区三区国产在线-九九碰-成人免费视频毛片-无码人妻精品一区二区三区66-在线观看av一区二区-天天磁力-成人高潮视频-午夜不卡电影-久久影院午夜-久色一区-羞辱ts慰菊高潮前列腺-黄色a在线观看-国产在线播放观看-亚洲精品国产美女

Pharmacokinetics and Novel Metabolite Identification of Tartary Buckwheat Extracts in Beagle Dogs Following Co-Administration with Ethanol

Abstract: Alcoholic liver disease (ALD) has become a critical global public health issue worldwide. Tartary buckwheat extracts exhibit potential therapeutic effffects against ALD due to its antioxidant and anti-inflflammatory activities. However, in vivo pharmacokinetics and metabolite identifification of tartary buckwheat extracts have not been clearly elucidated. Accordingly, the current manuscript aimed to investigate pharmacokinetics and to identify novel metabolites in beagle dogs following oral co-administration of tartary buckwheat extracts and ethanol. To support pharmacokinetic study, a simple LC-MS/MS method was developed and validated for simultaneous determination of quercetin and kaempferol in beagle dog plasma. The conjugated forms of both analytes were hydrolyzed by β-glucuronidase and sulfatase followed by liquid-liquid extraction using methyl tert-butyl ether. In addition, another effffective approach was established using advanced ultrafast liquid chromatography coupled with a Q-Exactive hybrid quadrupole orbitrap high resolution mass spectrometer to identify the metabolites in beagle dog biological samples including urine, feces, and plasma. The pharmacokinetic study demonstrated that the absolute oral bioavailability for quercetin and kaempferol was determined to be 4.6% and 1.6%, respectively. Oral bioavailability of quercetin and kaempferol was limited in dogs probably due to poor absorption, signifificant fifirst pass effffect, and biliary elimination, etc. Using high resolution mass spectrometric analysis, a total of nine novel metabolites were identifified for the fifirst time and metabolic pathways included methylation, glucuronidation, and sulfation. In vivo pharmacokinetics and metabolite identifification results provided preclinical support of co-administration of tartary buckwheat extracts and ethanol in humans. 

Keywords: tartary buckwheat extracts; pharmacokinetics; metabolite identifification; beagle dog; mass spectrometry