Clyman R I, Sandler J A, Manganiello V C, Vaughan M
J Clin Invest. 1975 May;55(5):1020-5. doi: 10.1172/JCI108002.
Human umbilical arteries are unique vessels in that they close quickly and completely at birth. It has been suggested that cyclic uanosine 3',5'-monophosphate (cAMP) in relaxation. This hypothesis has been evaluated in term gestational human umbilical artery segments incubated at 37 degrees C and in room air. (a) The basal cGMP content (1 pmol/mg protein) of artery segments incubated in room air was almost twice that of cAMP. (b) Bradykinin, histamine, serotonin, acetylcholine, and K+ ion, which cause umbilical artery constriction, can increase the cGMP content of the artery segments within 30 s of exposure without altering the cAMP content. (c) Prostaglandin E1, but not isoproterenol, caused accumulation of cAMP which is consistent with reports that umbilical arteries lack functional beta-receptors and that only prostaglandin E1 can bring about relaxation of umbilical arteries. (d) 1 muM atropine blocked the effect of 100 muM acetylcholine on cGMP content without altering the responses to histamine, bradykinin, serotonin, or K+ ion. (e) Pyrilamine (an H1 antagonist), but not metiamide (an H2 antagonist), blocked the effect of histamine on cGMP from which it is inferred that histamine causes accumulation of cGMP in umbilical artery via its interaction with H1 receptors. The results are consistent with the view that metabolism of the two cyclic nucleotides is independently controlled in the human umbilical artery and that cGMP is involved in contraction of the artery at birth.
人脐动脉是独特的血管,因为它们在出生时会迅速且完全闭合。有人提出环磷酸鸟苷(cGMP)参与舒张过程。这一假说已在37℃室温空气中孵育的足月妊娠人脐动脉节段中得到评估。(a)在室温空气中孵育的动脉节段的基础cGMP含量(1 pmol/mg蛋白质)几乎是cAMP的两倍。(b)导致脐动脉收缩的缓激肽、组胺、5-羟色胺、乙酰胆碱和钾离子,可在暴露30秒内增加动脉节段的cGMP含量,而不改变cAMP含量。(c)前列腺素E1而非异丙肾上腺素可导致cAMP积聚,这与脐动脉缺乏功能性β受体以及只有前列腺素E1能使脐动脉舒张的报道一致。(d)1 μM阿托品可阻断100 μM乙酰胆碱对cGMP含量的影响,而不改变对组胺、缓激肽、5-羟色胺或钾离子的反应。(e)吡拉明(一种H1拮抗剂)而非甲硫米特(一种H2拮抗剂)可阻断组胺对cGMP的影响,由此推断组胺通过与H1受体相互作用导致脐动脉中cGMP积聚。这些结果与以下观点一致,即两种环核苷酸的代谢在人脐动脉中是独立控制的,且cGMP参与出生时动脉的收缩。