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儿茶酚-O-甲基转移酶抑制或单胺氧化酶抑制对大鼠心脏中3H-(-)-去甲肾上腺素细胞外代谢的影响。

The influence of inhibition of catechol-O-methyl transferase or of monoamine oxidase on the extraneuronal metabolism of 3H-(-)-noradrenaline in the rat heart.

作者信息

Trendelenburg U

出版信息

Naunyn Schmiedebergs Arch Pharmacol. 1984 Oct;327(4):285-92. doi: 10.1007/BF00506238.

Abstract

The extraneuronal metabolism of 3H-(-)-noradrenaline (1 nmol/l) was determined in rat hearts obtained from reserpine-pretreated animals (in the presence of 30 mumol/l cocaine). Inhibition of monoamine oxidase (MAO) (by pretreatment of the animals with pargyline) increased the formation of O-methylated metabolites by nearly that amount by which the formation of deaminated metabolites declined; hence, catechol-O-methyl transferase (COMT) seemed to be able to nearly fully compensate for the loss of MAO activity. However, when COMT was inhibited (by the presence of either 1 or 10 mumol/l U-O521), the increase in the formation of deaminated metabolites was smaller than the decrease in the formation of O-methylated metabolites; hence, MAO seemed to be unable to fully compensate for the loss of COMT activity. These results are discussed with regard to the hypothesis that the two extraneuronal enzymes co-exist in one compartment. As inhibition of COMT causes a much greater increase in the steady-state tissue/medium ratio for 3H-(-)-noradrenaline than does inhibition of MAO, it is suggested that it is this increase in the intracellular concentration of 3H-(-)-noradrenaline which - by promoting an efflux of the unchanged amine that is proportional to the tissue/medium ratio - actually decreases the net removal of 3H-(-)-noradrenaline from the perfusion fluid. The results are compatible with (but no evidence for) the hypothesis that the two enzymes co-exist in the same extraneuronal compartment.

摘要

在从利血平预处理动物(在30μmol/l可卡因存在下)获得的大鼠心脏中,测定了3H-(-)-去甲肾上腺素(1nmol/l)的神经元外代谢。单胺氧化酶(MAO)的抑制(通过用帕吉林对动物进行预处理)使O-甲基化代谢物的形成增加量几乎与脱氨基代谢物形成的减少量相同;因此,儿茶酚-O-甲基转移酶(COMT)似乎能够几乎完全补偿MAO活性的损失。然而,当COMT被抑制(通过存在1或10μmol/l的U - O521)时,脱氨基代谢物形成的增加小于O-甲基化代谢物形成的减少;因此,MAO似乎无法完全补偿COMT活性的损失。关于这两种神经元外酶共存于一个区室的假说对这些结果进行了讨论。由于抑制COMT比抑制MAO导致3H-(-)-去甲肾上腺素的稳态组织/培养基比率增加得更多,因此表明正是3H-(-)-去甲肾上腺素细胞内浓度的这种增加 - 通过促进与组织/培养基比率成比例的未改变胺的流出 - 实际上减少了灌注液中3H-(-)-去甲肾上腺素的净清除。这些结果与这两种酶共存于同一神经元外区室的假说相符(但没有证据支持)。

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