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Development of an ex vivo model for pharmacological experimentation on isolated tissue preparation

机译:建立离体组织制剂的药理实验的体外模型

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Pharmacology as a subject depends largely on experiments conducted in laboratory animals. Experimental animals like rat, guinea pig, rabbit, etc. are used for the biological assay. For the teaching purposes to use isolated strip preparations from various organs, the laboratory animal species has to be sacrificed just for a piece of tissue. The present study was aimed to develop ex vivo model for pharmacological experimentation, which will mimic the actual laboratory condition without sacrificing the experimental animals. Dose response curve of acetylcholine alone and in presence of different concentrations of atropine was plotted using isolated chicken ileum, chicken duodenum, rat ileum, and rat duodenum and their EC50 values were compared. The effect of atropine in terms of its type of antagonism was predicted based on Schild plot and pA2 values were obtained. The chicken ileum and duodenum were also evaluated for four- and three-point bioassay, respectively. The results suggested that acetylcholine produced a dose-dependent increase in contraction in both chicken and rat ileum and duodenum preparation. The concentration response curve of acetylcholine in chicken ileum shifted toward left side of rat ileum with a higher EC50 value. Atropine shifted the concentration response curve of acetylcholine toward right with a change in EC50 value. Schild plots indicated that antagonism produced by atropine was found to be competitive in nature. The pA2 values of atropine were found significantly high with isolated chicken ileum as compared to rat ileum preparation. It is concluded that isolated chicken ileum and duodenum preparation can be employed for routine experiments of pharmacology subject and the use of these isolated preparations is a novel approach for managing pharmacological experiments and importantly, without sacrificing the experimental animals.Keywords: Chicken ileum, duodenum, four point bioassay, pA2 value, three point bioassay
机译:药理学在很大程度上取决于在实验动物中进行的实验。实验动物如大鼠,豚鼠,兔子等用于生物学测定。为了教学目的,使用从各个器官中分离得到的试纸条,必须牺牲实验动物的物种,仅用于一块组织。本研究旨在开发用于药理实验的离体模型,该模型将模拟实际实验室条件而不会牺牲实验动物。使用分离的鸡回肠,鸡十二指肠,大鼠回肠和大鼠十二指肠绘制单独和在不同浓度阿托品存在下的乙酰胆碱剂量反应曲线,并比较其EC50值。根据Schild图预测了阿托品的拮抗作用,并获得了pA2值。还分别对鸡回肠和十二指肠进行了四点和三点生物测定。结果表明,乙酰胆碱在鸡和大鼠回肠以及十二指肠制备物中均产生剂量依赖性的收缩增加。鸡回肠中乙酰胆碱的浓度响应曲线向大鼠回肠左侧移动,EC50值较高。阿托品随着EC50值的变化使乙酰胆碱的浓度响应曲线向右移动。 Schild地块表明,阿托品产生的拮抗作用在自然界具有竞争性。发现与大鼠回肠制剂相比,分离的鸡回肠中阿托品的pA2值明显较高。结论是分离的鸡回肠和十二指肠制剂可用于药理学对象的常规实验,这些分离的制剂的使用是管理药理实验的一种新方法,而且重要的是在不牺牲实验动物的情况下。四点生物测定法,pA2值,三点生物测定法

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