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培养的内皮细胞中内皮源性舒张因子(EDRF)的释放及特性

Release and properties of endothelium-derived relaxing factor (EDRF) from endothelial cells in culture.

作者信息

Cocks T M, Angus J A, Campbell J H, Campbell G R

出版信息

J Cell Physiol. 1985 Jun;123(3):310-20. doi: 10.1002/jcp.1041230304.

Abstract

Cultured bovine endothelial cells were seeded onto the intimal surface of endothelium-denuded rings of canine coronary artery. These rings did not previously relax to acetylcholine, substance P, bradykinin, and A23187. After seeding, the same rings relaxed to bradykinin and A23187, but not to acetycholine or substance P. Indomethacin pretreatment did not affect these responses. Cells from the same source were then grown to confluence on microcarrier beads, poured into small columns, and perfused with Krebs' solution. The perfusate from the columns was bioassayed on endothelium-denuded rings of coronary artery from either the dog or pig. Challenge of the column in the presence of indomethacin with either bradykinin or A23187 as well as acetylcholine or substance P caused release of a substance that relaxed both types of artery. Its activity half-life was 6.4 +/- 0.4 sec at 37 degrees C and it was hydrophilic and negatively charged. Prostacyclin (PGI2) as a candidate for EDRF was ruled out because 1) indomethacin failed to block its release and 2) the pig coronary artery, although insensitive to PGI2, relaxed to the endothelium-derived substance. These results show that, in response to a number of dilator drugs, cultured endothelial cells release a vascular relaxing substance (EDRF) that has characteristics similar to the EDRF of normal endothelium. The chemical nature of EDRF awaits clarification.

摘要

将培养的牛内皮细胞接种到犬冠状动脉内皮剥脱环的内膜表面。这些环先前对乙酰胆碱、P物质、缓激肽和A23187无舒张反应。接种后,相同的环对缓激肽和A23187有舒张反应,但对乙酰胆碱或P物质无反应。吲哚美辛预处理不影响这些反应。然后将来自同一来源的细胞在微载体珠上生长至汇合,倒入小柱中,并用Krebs溶液灌注。柱的灌注液在犬或猪的冠状动脉内皮剥脱环上进行生物测定。在吲哚美辛存在下,用缓激肽或A23187以及乙酰胆碱或P物质刺激柱,导致一种能使两种类型动脉舒张的物质释放。其活性半衰期在37℃时为6.4±0.4秒,且具有亲水性和负电荷。前列环素(PGI2)作为内皮舒张因子(EDRF)的候选物被排除,因为1)吲哚美辛未能阻断其释放;2)猪冠状动脉虽然对PGI2不敏感,但对内皮衍生物质有舒张反应。这些结果表明,对多种舒张药物的反应中,培养的内皮细胞释放一种血管舒张物质(EDRF),其特性与正常内皮的EDRF相似。EDRF的化学性质有待阐明。

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