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微球诱导的支气管动脉血管舒张:腺苷、前列环素和一氧化氮的作用。

Microsphere-induced bronchial artery vasodilation: role of adenosine, prostacyclin, and nitric oxide.

作者信息

Pearse D B, Dahms T E, Wagner E M

机构信息

Division of Pulmonary and Critical Care Medicine, Johns Hopkins Medical Institutions, Baltimore, Maryland 21224, USA.

出版信息

Am J Physiol. 1998 Mar;274(3):H760-8. doi: 10.1152/ajpheart.1998.274.3.H760.

DOI:10.1152/ajpheart.1998.274.3.H760
PMID:9530186
Abstract

We previously found that injection of 15-micron microspheres into the bronchial artery of sheep decreased bronchial artery resistance. This effect was inhibited partially by indomethacin or 8-phenyltheophylline, suggesting that microspheres caused release of a dilating prostaglandin and adenosine. To identify the prostaglandin and confirm adenosine release, we perfused the bronchial artery in anesthetized sheep. In 12 sheep, bronchial artery blood samples were obtained before and after the infusion of 1 x 10(6) microspheres or microsphere diluent into the bronchial artery. Microspheres, but not diluent, decreased bronchial artery resistance by 40% and increased bronchial artery plasma 6-ketoprostaglandin F1 alpha (194.7 +/- 45.0 to 496.5 +/- 101.3 pg/ml), the stable metabolite of prostacyclin, and prostaglandin (PG) F2 alpha (28.1 +/- 4.4 to 46.2 +/- 9.7 pg/ml). There were no changes in PGD2, PGE2, thromboxane B2, adenosine, inosine, or hypoxanthine. Pretreatment with dipyridamole, an adenosine uptake inhibitor, did not affect bronchial artery nucleoside concentrations (n = 7). Microsphere-induced vasodilation was not enhanced by dipyridamole (n = 9) and was not inhibited by either the adenosine receptor antagonist xanthine amine congener (n = 4) or the nitric oxide (NO) synthase inhibitor NG-monomethyl-L-arginine (n = 8). These results do not support a role for either adenosine or NO and suggest that microspheres caused bronchial artery vasodilation through release of prostacylin and an unidentified vasodilator.

摘要

我们之前发现,向绵羊支气管动脉注射15微米的微球可降低支气管动脉阻力。吲哚美辛或8-苯基茶碱可部分抑制这种作用,这表明微球会导致舒张性前列腺素和腺苷的释放。为了鉴定前列腺素并确认腺苷的释放,我们对麻醉的绵羊的支气管动脉进行灌注。在12只绵羊中,向支气管动脉输注1×10(6)个微球或微球稀释剂之前和之后,采集支气管动脉血样。微球而非稀释剂使支气管动脉阻力降低了40%,并使支气管动脉血浆中前列环素的稳定代谢产物6-酮前列腺素F1α(从194.7±45.0 pg/ml增至496.5±101.3 pg/ml)以及前列腺素(PG)F2α(从28.1±4.4 pg/ml增至46.2±9.7 pg/ml)增加。前列腺素D2、前列腺素E2、血栓素B2、腺苷、肌苷或次黄嘌呤均无变化。用腺苷摄取抑制剂双嘧达莫预处理不影响支气管动脉核苷浓度(n = 7)。双嘧达莫未增强微球诱导的血管舒张(n = 9),腺苷受体拮抗剂黄嘌呤胺同类物(n = 4)或一氧化氮(NO)合酶抑制剂Nω-甲基-L-精氨酸(n = 8)也未抑制微球诱导的血管舒张。这些结果不支持腺苷或NO发挥作用,并表明微球通过释放前列环素和一种未明确的血管舒张剂导致支气管动脉血管舒张。

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