Kilpatrick M J, Collins W P, Newton J R
J Reprod Fertil. 1976 Jan;46(1):25-30. doi: 10.1530/jrf.0.0460025.
A continuous flow system has been developed to study the endocrine functions of isolated organs. The procedure has been used to investigate the effect of a synthetic gonadotrophin-releasing hormone (Gn-RH) upon the anterior pituitary gland of the adult male rat. A Radiometer blood gas/pH analyser was used to monitor the pH and partial pressures of oxygen and carbon dioxide in the perfusion medium. A series of six experiments with four pituitaries per flask established that the rate of gonadotrophin release under basal conditions was 646 +/- 301 (S.D.) ng LH/ml and 404 +/- 124 (S.D.) ng FSH/ml. The duration and intensity of the response to Gn-RH was assessed by measuring the areas under the curves according to the trapezoidal rule. A significant increase in the release of FSH and LH was obtained by the administration of 250 ng Gn-RH/ml medium, and dose-response curves were produced for up to 10 mug/ml.
已开发出一种连续流动系统来研究离体器官的内分泌功能。该程序已用于研究合成促性腺激素释放激素(Gn-RH)对成年雄性大鼠垂体前叶的影响。使用Radiometer血气/pH分析仪监测灌注介质中的pH值以及氧气和二氧化碳的分压。在一系列六个实验中,每个烧瓶中有四个垂体,结果表明在基础条件下促性腺激素的释放速率为646±301(标准差)ng LH/ml和404±124(标准差)ng FSH/ml。根据梯形法则,通过测量曲线下面积来评估对Gn-RH的反应持续时间和强度。通过向培养基中添加250 ng Gn-RH/ml可使FSH和LH的释放显著增加,并绘制了高达10μg/ml的剂量反应曲线。