首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >Determination of the contribution of cysteinyl leukotrienes and leukotriene B4 in acute inflammatory responses using 5-lipoxygenase- and leukotriene A4 hydrolase-deficient mice.
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Determination of the contribution of cysteinyl leukotrienes and leukotriene B4 in acute inflammatory responses using 5-lipoxygenase- and leukotriene A4 hydrolase-deficient mice.

机译:使用5-脂氧合酶和白三烯A4水解酶缺陷型小鼠测定半胱氨酰白三烯和白三烯B4在急性炎症反应中的作用。

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摘要

Arachidonic acid metabolism by 5-lipoxygenase leads to production of the potent inflammatory mediators, leukotriene (LT) B4 and the cysteinyl LT. Relative synthesis of these subclasses of LT, each with different proinflammatory properties, depends on the expression and subsequent activity of LTA4 hydrolase and LTC4 synthase, respectively. LTA4 hydrolase differs from other proteins required for LT synthesis because it is expressed ubiquitously. Also, in vitro studies indicate that it possesses an aminopeptidase activity. Introduction of cysteinyl LT and LTB4 into animals has shown LTB4 is a potent chemoattractant, while the cysteinyl LT alter vascular permeability and smooth muscle tone. It has been impossible to determine the relative contributions of these two classes of LT to inflammatory responses in vivo or to define possible synergy resulting from the synthesis of both classes of mediators. To address this question, we have generated LTA4 hydrolase-deficient mice. These mice develop normally and are healthy. Using these animals, we show that LTA4 hydrolase is required for the production of LTB4 in an in vivo inflammatory response. We show that LTB4 is responsible for the characteristic influx of neutrophils accompanying topical arachidonic acid and that it contributes to the vascular changes seen in this model. In contrast, LTB4 influences only the cellular component of zymosan A-induced peritonitis. Furthermore, LTA4 hydrolase-deficient mice are resistant to platelet-activating factor, identifying LTB4 as one mediator of the physiological changes seen in systemic shock. We do not identify an in vivo role for the aminopeptidase activity of LTA4 hydrolase.
机译:5-脂氧合酶的花生四烯酸代谢可导致产生强效炎症介质白三烯(LT)B4和半胱氨酸LT。这些具有不同促炎特性的LT亚类的相对合成分别取决于LTA4水解酶和LTC4合酶的表达及其后续活性。 LTA4水解酶与LT合成所需的其他蛋白质不同,因为它普遍存在。另外,体外研究表明它具有氨基肽酶活性。将半胱氨酰LT和LTB4引入动物体内已显示LTB4是一种有效的化学引诱剂,而半胱氨酸LT则可改变血管通透性和平滑肌张力。尚无法确定这两类LT对体内炎症反应的相对贡献,也无法确定由这两类介体的合成产生的可能的协同作用。为了解决这个问题,我们产生了LTA4水解酶缺陷小鼠。这些小鼠发育正常且健康。使用这些动物,我们显示LTA4水解酶是体内炎症反应中产生LTB4所必需的。我们显示,LTB4负责伴随局部花生四烯酸的嗜中性粒细胞的特征性流入,并且它有助于在此模型中看到的血管变化。相反,LTB4仅影响酵母聚糖A诱导的腹膜炎的细胞成分。此外,LTA4水解酶缺陷型小鼠对血小板激活因子具有抗性,从而确定LTB4是全身性休克中生理变化的一种介质。我们没有确定LTA4水解酶的氨肽酶活性的体内作用。

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