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皮质酮对3H-去甲变肾上腺素进出灌注大鼠心脏神经外间隙流量的影响。

The effect of corticosterone on the fluxes of 3H-normetanephrine into and out of the extraneuronal compartments of the perfused rat heart.

作者信息

Uhlig W, Fiebig R, Trendelenburg U

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1976 Oct;295(1):45-50. doi: 10.1007/BF00509771.

Abstract
  1. Hearts were obtained from pargyline-pretreated rats and perfused with 40 nM 3H-normethanephrine for 21 min. 87 muM corticosterone reduced the accumulation of 3H-normethanephrine in the heart. 2. When the initial perfusion with 3H-normetanephrine was followed by perfusion of the hearts with amine-free solution for 90 min, efflux of radioactivity was determined. Analysis of efflux curves showed that, apart from its distribution into extracellular space and fluid content of cardiac cavities, radioactivity distributed mainly into one corticosterone-sensitive, extra-neuronal compartment (compartment III, half time for efflux about 6 min). 3. When corticosterone was added to the wash out solution only, it failed to affect the efflux of radioactivity. 4. Although monoamine oxidase was inhibited, some deaminated metabolites of normetanephrine were detected in the efflux. Efflux of 3H-metabolites was monophasic in about half the hearts (short half time corresponding to that of compartment III) and biphasic in the other half. The early phase of efflux (short half time) seemed to represent efflux of newly formed metabolite(s), while the late phase (if present) appeared to be due to efflux of metabolites formed early in the experiment. 5. While corticosterone is known to inhibit the extraneuronal influx and efflux of catecholamines, it appears to impair the influx of normetanephrine without affecting the efflux.
摘要
  1. 从经帕吉林预处理的大鼠获取心脏,并用40 nM的3H-去甲变肾上腺素灌注21分钟。87 μM的皮质酮减少了心脏中3H-去甲变肾上腺素的蓄积。2. 在用3H-去甲变肾上腺素进行初始灌注后,用无胺溶液灌注心脏90分钟,然后测定放射性流出情况。流出曲线分析表明,除了分布到细胞外空间和心腔的液体成分中,放射性主要分布到一个对皮质酮敏感的神经外隔室(隔室III,流出半衰期约为6分钟)。3. 仅在冲洗溶液中加入皮质酮时,它未能影响放射性流出。4. 尽管单胺氧化酶受到抑制,但在流出物中仍检测到一些去甲变肾上腺素的脱氨基代谢产物。约一半心脏中3H-代谢产物的流出是单相的(短半衰期与隔室III的半衰期相对应),另一半是双相的。流出的早期阶段(短半衰期)似乎代表新形成的代谢产物的流出,而后期阶段(如果存在)似乎是由于实验早期形成的代谢产物的流出。5. 虽然已知皮质酮会抑制儿茶酚胺的神经外流入和流出,但它似乎损害去甲变肾上腺素的流入而不影响流出。

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