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T-2 毒血症与脑前列腺素

T-2 toxemia and brain prostaglandins.

作者信息

Shohami E, Feuerstein G

出版信息

Prostaglandins. 1986 Feb;31(2):307-19. doi: 10.1016/0090-6980(86)90056-0.

Abstract

T-2 toxin is a trichothecene mycotoxin which is a member of a family of closely related sesquiterpenoids. It was recently shown that T-2 toxemia is associated with elevated plasma levels of eicosanoids. To study further the effect of T-2 on the cyclooxygenase pathway of arachidonate we examined the release of PGE2, TXB2 and 6-keto-FGF1 alpha from brain tissue exposed to T-2 toxin in vivo or in vitro. Administration of T-2 toxin (0.75 or 2 mg/kg) to conscious rats caused a transient increase in the rate of the release of 6-keto-PGF1 alpha and TXB2 from brain slices taken from the cortex (C); no effect was found in the hypothalamus (HT) or the nucleus tractus solitarius (NTS) region of the medulla oblogata. PGE2 showed time and dose related increments (over 5 folds) in both the C and HT but not in the NTS. Incubation of cortical or hypothalamic slices in oxygenated Krebs buffer with a wide range of T-2 toxin concentrations (10(-9)-10(-3) M) demonstrated a complex response: stimulation of PGE2 and TXB2 release from C slices at 10(-7) M (greater than 40%, p less than 0.01 and 20%, p less than 0.05, respectively) and inhibition at high concentrations (greater than 10(-4) M) of all PGs studied. Hypothalamic slices showed decrease in all PGs released by very low (10(-9)-10(-8)) or very high (10(-4) M) concentrations of T-2. These studies are consistent with the possibility that the arachidonate cascade in the central nervous system might have a role in the pathophysiology of trichothecene mycotoxicosis.

摘要

T-2毒素是一种单端孢霉烯族霉菌毒素,属于一类密切相关的倍半萜类化合物。最近研究表明,T-2中毒血症与血浆中类花生酸水平升高有关。为了进一步研究T-2对花生四烯酸环氧化酶途径的影响,我们检测了体内或体外暴露于T-2毒素的脑组织中PGE2、TXB2和6-酮-FGF1α的释放情况。给清醒大鼠注射T-2毒素(0.75或2mg/kg),导致取自皮质(C)的脑切片中6-酮-PGF1α和TXB2的释放速率短暂增加;在延髓的下丘脑(HT)或孤束核(NTS)区域未发现影响。PGE2在C和HT中均显示出时间和剂量相关的增加(超过5倍),但在NTS中未增加。将皮质或下丘脑切片在含不同浓度T-2毒素(10^(-9)-10^(-3)M)的含氧Krebs缓冲液中孵育,显示出复杂的反应:在10^(-7)M时,C切片中PGE2和TXB2的释放受到刺激(分别增加大于40%,p<0.01和20%,p<0.05),而在高浓度(大于10^(-4)M)时,所有研究的PGs释放均受到抑制。下丘脑切片显示,极低(10^(-9)-10^(-8))或极高(10^(-4)M)浓度的T-2会使所有释放的PGs减少。这些研究表明,中枢神经系统中的花生四烯酸级联反应可能在单端孢霉烯族霉菌毒素中毒的病理生理学中起作用。

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