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In Vivo Bioactivities and Kinetic Parameters of Rat Luteinizing Hormone Components

机译:大鼠叶丁骨激素组分的体内生物活化和动力学参数

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References(27) Rat pituitary LH shows an electrical charge heterogeneity owing to their carbohydrate moiety. The biological potencies of these isoelectric components increase with increasing pi when examined by in vitro testosterone production in isolated rat Leydig cells. The present study was carried out to clarify if this tendency was also true with of in vivo action and to estimate their kinetic parameters. Seven isoelectric components of LH, i.e. X (pI 7.9), A (8.4), B (8.8), C (9.1), D (9.3), E (9.6) and F (9.8), were administered to cannulated adult male rats. Blood samples were serially collected over a 5h period from the conscious animal, and rat LH and testosterone were assayed by RIA. The doses of a single component showed a linear relationship with the areas under the curve (AUC) of the blood LH. The testosterone AUC also correlated well with LH AUC. It was found that the components with lower pIs had longer half-lives and larger LH AUC, and smaller total body clearance rates with highly significant correlation coefficients. The in vivo bioactivities of the components expressed as testosterone AUC increased with decreasing pIs, indicating that the in vivo bioactivity was much influenced by the total body clearance rate. The intrinsic activities of the components were calculated as ratios of testosterone AUC to LH AUC where the effect of the clearance rate (or biological half-life) was eliminated. The intrinsic activities of components were not significantly different among the components except component X which showed a smaller activity. These data indicated that, with the exception of component X, an LH component with a lower pI has a longer biological half-life, resulting in a higher in vivo potency, quite contrary to the tendency of in vitro potency.
机译:参考文献(27)大鼠垂体LH由于其碳水化合物部分显示电荷非均其。当通过在分离的大鼠Leydig细胞中的体外睾酮产生时,这些等电成分的生物效应随着PI的增加而增加。进行本研究,以澄清这种趋势,如果这种趋势也是如此,在体内动作也是如此,并估计其动力学参数。 LH的七个等电分子,即X(PI 7.9),A(8.4),B(8.8),C(9.1),D(9.3),E(9.6)和F(9.8),用于成型成年雄性大鼠。从有意识的动物的5小时内串联收集血样,并通过RIA测定大鼠LH和睾酮。单个组分的剂量与血液LH的曲线(AUC)下的区域显示线性关系。睾酮AUC也与LH AUC相关。结果发现,具有较低PIS的组分具有较长的半衰期和较大的LH AUC,以及具有高显着相关系数的较小的总体间隙率。表达作为睾酮AUC的组分的体内生物活性随着PIS的降低而增加,表明体内生物活性受到总体清除率的影响很大。组分的内在活性被计算为睾酮AUC至LH AUC的比例,其中消除了许可率(或生物半衰期)的效果。除了组件X组分中,组分的内在活性在组分X中没有显着差异,其表现出较小的活​​性。这些数据表明,除了组分X外,具有较低PI的LH分量具有更长的生物半衰期,导致体内效力更高,与体外效力的趋势相反。

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