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人类肺组织中前列腺素的生成及其对人体气道功能的影响。

The generation of prostaglandins by human lung and their effects on airway function in man.

作者信息

Robinson C, Holgate S T

出版信息

Bull Eur Physiopathol Respir. 1986;22 Suppl 7:81-90.

PMID:3513876
Abstract

Human dispersed lung cells containing 5-10% mast cells synthesised and released large quantities of prostaglandin D2 (PGD2) and thromboxane B2 (TXB2), with either IgE-dependent activation or ionophore A23187 challenge. The generation of these prostanoids and the release of histamine was related to the strength of activation stimulus. After activation the release of histamine and PGD2 proceeded in parallel, and the significant correlation between the release of these mediators suggests a common mast cell origin. This hypothesis is supported by cell enrichment experiments using Percoll density gradients. Prostaglandin D2 and histamine release was always associated with those fractions containing mast cells, whereas the generation of TXB2 was mainly associated with cells of the monocyte-macrophage series. The putative 5-lipoxygenase inhibitor 6,9-deepoxy-6, 9-(phenylimino)- 6,8-prostaglandin I1 (U-60,257, Piriprost) had complex inhibitory and potentiating effects on immunoreactive leukotriene C4 generation from ionophore activated human lung cells. The drug also had a surprising potentiating action on PGD2 release, while simultaneously inhibiting the generation of TXB2. The release of prostanoids from human lung cells is discussed in relation to the putative role of prostaglandins in asthma, with particular emphasis on the pharmacological actions of PGD2 on human airway function in vivo.

摘要

含有5%-10%肥大细胞的人分散肺细胞,在IgE依赖性激活或离子载体A23187刺激下,合成并释放大量前列腺素D2(PGD2)和血栓素B2(TXB2)。这些前列腺素的生成和组胺的释放与激活刺激的强度有关。激活后,组胺和PGD2的释放平行进行,这些介质释放之间的显著相关性表明它们起源于共同的肥大细胞。使用Percoll密度梯度的细胞富集实验支持了这一假设。前列腺素D2和组胺的释放总是与含有肥大细胞的组分相关,而TXB2的生成主要与单核细胞-巨噬细胞系列的细胞相关。推定的5-脂氧合酶抑制剂6,9-二环氧-6,9-(苯基亚氨基)-6,8-前列腺素I1(U-60,257,吡嘧司特)对离子载体激活的人肺细胞产生免疫反应性白三烯C4具有复杂的抑制和增强作用。该药物对PGD2的释放也有惊人的增强作用,同时抑制TXB2的生成。本文讨论了人肺细胞中前列腺素的释放与前列腺素在哮喘中假定作用的关系,特别强调了PGD2对体内人气道功能的药理作用。

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