Interaction of prostaglandins and the myogenic factor in the mechanism of closure of the ductus arteriosus.

Physiologia Bohemoslovaca Pub Date : 1990-01-01
M Kriska, V Smiesko, C Cerletti, A del Maschio
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Abstract

Although the role of prostaglandins (PG) in the mechanism of dilatation of the ductus arteriosus (DA) has received considerable attention, no data on their possible interaction with the pressure-induced myogenic reaction are available. There is also a lack of information on PG production by the foetal blood vessels of the guinea-pig, in which the DA closes rapidly. Use of the RIA method showed relatively low PG production by isolated foetal guinea pig blood vessels, as represented by the main products, PGI1 and PGE2. When computed in pmol per mg wet weight, the production of 6-keto-PGF1 alpha (an equivalent of PGI2) was statistically significantly higher in the foetal DA (4.06 +/- 1.13) than in the foetal aorta (2.04 +/- 0.33). The isolated DA reacts to a sudden increase in perfusion pressure by marked constriction, which in some cases leads to functional closure of the DA. In 10(-7) to 10(-5) mol.l-1 concentration, PGE2 reversibly inhibits pressure-induced myogenic constriction, while under the same conditions the contractility of the DA in response to oxygen is unaffected. In concentrations of 10(-6)-10(-5) mol.l-1, indomethacin, a blocker of PG biosynthesis, also induces pressure constriction and it raises the basal flow resistance of isolated DA preparations. The results indicate that PGs play a modulator role in the pressure myogenic response of the DA of guinea-pig and rabbit foetuses.

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前列腺素与肌生成因子在动脉导管闭合机制中的相互作用。
尽管前列腺素(PG)在动脉导管扩张(DA)机制中的作用受到了相当多的关注,但没有关于它们与压力诱导的肌生成反应可能相互作用的数据。在豚鼠的胎儿血管中,DA会迅速闭合,关于PG产生的信息也缺乏。RIA法显示离体豚鼠胎儿血管中PG的产量相对较低,主要产物为PGI1和PGE2。当以pmol / mg湿重计算时,胎儿DA(4.06 +/- 1.13)的6-酮- pgf1 α(相当于PGI2)的产生显著高于胎儿主动脉(2.04 +/- 0.33)。孤立的DA对灌注压力突然增加的反应是明显的收缩,在某些情况下导致DA的功能性关闭。在10(-7)至10(-5)mol.l-1浓度下,PGE2可逆地抑制压力诱导的肌原性收缩,而在相同条件下,DA对氧的收缩性不受影响。吲哚美辛是一种PG生物合成阻滞剂,浓度为10(-6)-10(-5)mol.l-1时,吲哚美辛也能诱导压力收缩,并提高分离的DA制剂的基础血流阻力。结果表明,PGs在豚鼠和兔胎儿DA的压力肌生成反应中起调节作用。
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