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A Novel Method for Preparation of Animal Models of Liver Damage: Liver Targeting of Carbon Tetrachloride in Rats

机译:一种制备肝损害动物模型的新方法:以大鼠四氯化碳为靶标的肝脏

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Animal models prepared by treatment with toxic compounds such as a carbon tetrachloride have been used to examine drug disposition in hepatic diseases. However, it is possible that these compounds accumulate and cause damage o other organs as they are administered systemically. In this study, we used the liver surface application technique to deliver an toxic compound to the liver to prepare an appropriate animal model in which only the liver is significantly damaged. To restrict the absorption area in the liver, a cylindrical diffusion cell was attached to the liver surface of male Wistar rats. Twenty-four hours after direct addition of carbon tetrachloride to the diffusion cell, plasma levels of glutamic-oxaloacetic transaminase (GOT) and glutamic-pyruvic transaminase (GPT), and hepatic malondialdehyde (MDA) concentration were increased, while there were no changes in plasma creatinine or renal MDA level. On the other hand, not only GOT, GPT and hepatic MDA, but also creatinine and renal MDA levels were markedly increased by p.o. and i.p. administration of carbon tetrachloride, suggesting renal damage. These results indicated that the animal models of liver damage prepared by utilizing drug delivery techniques to accumulate toxic compounds in the liver would enable us to investigate the precise effects of hepatic disorder on drug disposition.
机译:通过用有毒化合物(例如四氯化碳)处理而制备的动物模型已用于检查肝病中的药物处置。但是,这些化合物在全身给药时可能会积聚并损害其他器官。在这项研究中,我们使用肝脏表面施用技术将有毒化合物递送至肝脏,以制备仅肝脏受到严重损害的适当动物模型。为了限制肝脏中的吸收区域,将圆柱形扩散池附着在雄性Wistar大鼠的肝脏表面。将四氯化碳直接添加至扩散池后的24小时,血浆谷氨酸-草酰乙酸转氨酶(GOT)和谷氨酸-丙酮酸转氨酶(GPT)的水平以及肝丙二醛(MDA)的浓度均升高,而血浆肌酐或肾脏MDA水平。另一方面,p.o不仅显着增加了GOT,GPT和肝MDA,而且肌酐和肾MDA水平也显着增加。和ip服用四氯化碳,提示肾脏损害。这些结果表明,通过利用药物输送技术在肝脏中积累有毒化合物制备的肝损害动物模型将使我们能够研究肝病对药物处置的精确影响。

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