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Oral Bioavailability of Kinsenoside in Beagle Dogs Measured by LC-MS/MS: Improvement of Ex Vivo Stability of a Lactone-Containing Compound

机译:通过LC-MS / MS测量的猎犬犬Kinsenoside的口服生物利用度:改善含内乙酰胺化合物的离体稳定性

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摘要

Kinsenoside (KD), an active compound isolated from Anoectochilus roxburghii, has demonstrated multiple pharmacological activities including hepatoprotection, antihyperliposis, antihyperglycemia, and antiosteoporosis. To the best of our knowledge, there are no available data concerning its preclinical pharmacokinetics and bioavailability in beagle dogs. To support preclinical pharmacokinetic and bioavailability study, a reliable LC-MS/MS method was developed for KD concentration measurements in beagle dog plasma. The chromatographic separation was achieved on a Waters Atlantis® Hilic Silica column with an optimum mobile phase consisting of 5 mM ammonium acetate in water (pH 3.0 adjusted with acetic acid) and acetonitrile at a flow rate of 0.2 mL/min. Mass spectrometric analyses were carried out by monitoring multiple reaction monitoring transitions at m/z 265.2→102.9 for KD and m/z 174.0→128.0 for l-phenyl-d5-alanine-2,3,3-d3 (IS). The stability of KD in beagle dog whole blood and plasma was systematically evaluated. Lowering the temperature played a more critical role in stabilizing KD than decreasing the pH and adding esterase inhibitors, indicating that the major reason for instability of KD was probably due to chemical hydrolysis rather than esterase-mediated degradation. The currently developed method was validated and applied to a pharmacokinetic and bioavailability study of KD in beagle dogs following oral administration at a dose of 3 mg/kg. The absolute oral bioavailability for KD was determined to be 27.6%. Compared with typical glycosides, KD has a better bioavailability and is suitable for developing an oral dosage form.
机译:Kinsenide(KD)是一种从Anoectochilus Roxburghii分离的活性化合物,已经证明了多种药理活性,包括肝脏或抗高症,抗血糖和抗软骨病。据我们所知,在比格犬的临床前药代动力学和生物利用度没有有可用的数据。为了支持临床前药代动力学和生物利用度研究,开发了可靠的LC-MS / MS方法,用于猎犬犬等离子体中的KD浓度测量。在水atlantis®HIlic硅柱上实现了色谱分离,其具有最佳流动相,由5mM乙酸铵在水(用乙酸调节的pH3.0)和0.2mL / min的流速下组成。通过监测M / Z 265.2→102.9的多重反应监测转变进行质谱分析,用于Kd和M / Z 174.0→128.0的L-苯基-D5-丙氨酸-2,3,3-D3(是)。系统地评估了Geagle Dog全血和血浆中Kd的稳定性。降低温度在稳定Kd方面发挥了更重要的作用,而不是降低pH和添加酯酶抑制剂,表明KD的不稳定性的主要原因可能是由于化学水解而不是酯酶介导的降解。目前开发的方法被验证并应用于KD在口服给药后KD的药代动力学和生物利用度研究以3mg / kg剂量的剂量。 KD的绝对口腔生物利用度确定为27.6%。与典型的糖苷相比,KD具有更好的生物利用度,适合于培养口腔剂型。

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