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首页> 外文期刊>Toxicon: An International Journal Devoted to the Exchange of Knowledge on the Poisons Derived from Animals, Plants and Microorganisms >Pharmacokinetics of the Sri Lankan hump-nosed pit viper (Hypnale hypnale) venom following intravenous and intramuscular injections of the venom into rabbits
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Pharmacokinetics of the Sri Lankan hump-nosed pit viper (Hypnale hypnale) venom following intravenous and intramuscular injections of the venom into rabbits

机译:向兔子静脉内和肌肉内注射毒液后,斯里兰卡驼峰坑毒蛇的药代动力学

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The knowledge of venom pharmacokinetics is essential to improve the understanding of envenomation pathophysiology. Using a double-sandwich ELISA, this study investigated the pharmacokinetics of the venom of hump-nosed pit viper (Hypnale hypnale) following intravenous and intramuscular injections into rabbits. The pharmacokinetics of the venom injected intravenously fitted a three-compartment model. There is a rapid (t(1/2 pi) = 0.4 h) and a slow (t(1/2 alpha) = 0.8 h) distribution phase, followed by a long elimination phase (t(1/2 beta) = 19.3 h) with a systemic clearance of 6.8 mL h(-1) kg(-1), consistent with the prolonged abnormal hemostasis reported in H. hypnale envenomation. On intramuscular route, multiple peak concentrations observed in the beginning implied a more complex venom absorption and/or distribution pattern. The terminal half-life, volume of distribution by area and systemic clearance of the venom injected intramuscularly were nevertheless not significantly different (p > 0.05) from that of the venom injected intravenously. The intramuscular bioavailability was exceptionally low (F-i.m. = 4%), accountable for the highly varied median lethal doses between intravenous and intramuscular envenomations in animals. The findings indicate that the intramuscular route of administration does not significantly alter the pharmacokinetics of H. hypnale venom although it significantly reduces the systemic bioavailability of the venom
机译:毒液药代动力学的知识对于增进对毒化病理生理学的了解至关重要。使用双夹心ELISA,这项研究调查了在向兔静脉内和肌肉内注射后,驼峰坑毒蛇(Hypnale hypnale)毒液的药代动力学。静脉注射毒液的药代动力学符合三室模型。有一个快速的分布阶段(t(1/2 pi)= 0.4 h)和一个缓慢的分布(t(1/2 alpha)= 0.8 h),然后是一个较长的消除阶段(t(1/2 beta)= 19.3 h)具有6.8 mL h(-1)kg(-1)的全身清除率,与在H. hypnale毒化中报道的长时间异常止血相一致。在肌肉内途径中,在开始时观察到多个峰浓度暗示更复杂的毒液吸收和/或分布模式。肌肉注射毒液的终末半衰期,按面积分布的体积和全身清除率与静脉注射毒液没有显着差异(p> 0.05)。肌肉内生物利用度极低(F-i.m。= 4%),这是动物静脉内和肌肉内毒化之间的中等致死剂量差异很大的原因。研究结果表明,肌内给药途径虽然能显着降低毒液的全身生物利用度,但不会显着改变催眠链球菌毒液的药代动力学。

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