首页> 外文期刊>European Journal of Pharmacology: An International Journal >The effects of valproate on the arachidonic acid metabolism of rat brain microvessels and of platelets.
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The effects of valproate on the arachidonic acid metabolism of rat brain microvessels and of platelets.

机译:丙戊酸盐对大鼠脑微血管和血小板花生四烯酸代谢的影响。

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摘要

Long-term administration of the antiepileptic drug valproate can induce hematologic, hepatic and endocrine abnormalities and morphologic alterations in the brain capillaries and glial cells. Valproate elicits bone marrow suppression, reducing the number of red blood cells and platelets, and causes platelet functional abnormalities. Various data suggest that more than one mechanism of valproate-associated toxicity may exist, but the pathomechanism of cell function alterations elicited by valproate has not yet been elucidated. The reported ex vivo experiments were designed to investigate the effects of valproate on the arachidonic acid cascade of rat brain capillaries and platelets. Valproate was administered (300 mg/kg body weight/day) in the drinking water to male Wistar rats for 2 weeks. Isolated platelets and brain microvessels were labelled with [14C]arachidonic acid and the released [14C]eicosanoids were separated by overpressure thin-layer chromatography and determined quantitatively by liquid scintillation counting. Valproate treatment reduced the synthesis of cyclooxygenase and lipoxygenase products in rat platelets. In brain microvessels valproate stimulated the synthesis of lipoxygenase metabolites and attenuated the cyclooxygenase pathway. Modifications of the arachidonate cascade in platelets and brain microvessels may contribute to the cell function alterations caused by valproate.
机译:长期服用丙戊酸抗癫痫药会诱发血液,肝和内分泌异常以及脑毛细血管和神经胶质细胞的形态改变。丙戊酸引起骨髓抑制,减少红细胞和血小板的数量,并引起血小板功能异常。各种数据表明,可能存在一种以上的丙戊酸盐相关毒性机制,但尚未阐明丙戊酸盐引起的细胞功能改变的发病机制。所报道的离体实验旨在研究丙戊酸盐对大鼠脑毛细血管和血小板的花生四烯酸级联反应的影响。在雄性Wistar大鼠中,在饮用水中给予丙戊酸盐(300 mg / kg体重/天)2周。用[14C]花生四烯酸标记分离的血小板和脑微血管,通过超压薄层色谱法分离释放的[14C]类花生酸,并通过液体闪烁计数法定量测定。丙戊酸盐处理减少了大鼠血小板中环氧合酶和脂氧合酶产物的合成。在脑微血管中,丙戊酸盐刺激脂氧合酶代谢产物的合成,并减弱环氧合酶途径。血小板和脑微血管中花生四烯酸级联的修饰可能有助于丙戊酸引起的细胞功能改变。

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