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吗啡对去卵巢大鼠子宫条中花生四烯酸代谢、Ca2+摄取及环磷酸腺苷合成的影响。

Effects of morphine on arachidonic acid metabolism, on Ca2(+)-uptake and on cAMP synthesis in uterine strips from spayed rats.

作者信息

Faletti A, Bassi D, Franchi A M, Gimeno A L, Gimeno M A

机构信息

Centro de Estudios Farmacológicos y Botánico (CEFYBO), Consejo Nacional de Investigaciones Científicas y Técnicas de la República Argentina (CONICET), Buenos Aires.

出版信息

Prostaglandins Leukot Essent Fatty Acids. 1990 Nov;41(3):151-5. doi: 10.1016/0952-3278(90)90082-v.

Abstract

The effects of morphine on arachidonic acid metabolism, on cAMP levels and on basal and induced 45Ca2(+)-uptake, in uterine strips isolated from ovariectomized rats as well as the influence of naloxone, were explored. The presence of morphine (10(-6) M) did not change significantly 14C-arachidonic acid metabolism, basal cAMP levels, or cAMP increment induced by PGE2 or by PGE1. On the other hand morphine (10(-6) M) decreased basal uterine 45Ca2(+)-uptake as much as verapamil (10(-6) M) did, and this action was not prevented by naloxone (10(-8) M). The presence of oxytocin (50 mU.ml-1) augmented 45Ca2(+)-uptake, an effect which was antagonized by morphine (10(-6) M). This inhibitory action of morphine on oxytocin-induced 45Ca2(+)-uptake was not prevented by naloxone (10(-8) M). Furthermore, PGE1 (10(-8) M and (10(-6) M) but not PGE2 (10(-8) and 10(-6) M), stimulated the incorporation of 45Ca2+ into uterine strips, and this action was not altered by morphine. The inhibitory influence of morphine on uterine spontaneous motility and on prostaglandin synthesis and release, previously described by us, is now explained in terms of an inhibition of tissue Ca2(+)-uptake.

摘要

研究了吗啡对从去卵巢大鼠分离的子宫条中花生四烯酸代谢、环磷酸腺苷(cAMP)水平以及基础和诱导的45Ca2+摄取的影响,以及纳洛酮的作用。吗啡(10^-6 M)的存在并未显著改变14C-花生四烯酸代谢、基础cAMP水平或由前列腺素E2(PGE2)或前列腺素E1(PGE1)诱导的cAMP增加。另一方面,吗啡(10^-6 M)使子宫基础45Ca2+摄取减少的程度与维拉帕米(10^-6 M)相同,且这种作用不受纳洛酮(10^-8 M)的阻止。催产素(50 mU/ml-1)的存在增加了45Ca2+摄取,这一作用被吗啡(10^-6 M)拮抗。吗啡对催产素诱导的45Ca2+摄取的这种抑制作用不受纳洛酮(10^-8 M)的阻止。此外,PGE1(10^-8 M和10^-6 M)而非PGE2(10^-8 M和10^-6 M)刺激了45Ca2+掺入子宫条,且这一作用未被吗啡改变。我们之前描述的吗啡对子宫自发运动以及前列腺素合成和释放的抑制作用,现在可以用对组织Ca2+摄取的抑制来解释。

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