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点燃大鼠适应渗透状态变化时黑质中γ-氨基丁酸代谢及癫痫易感性的改变。

Alterations of GABA metabolism and seizure susceptibility in the substantia nigra of the kindled rat acclimating to changes in osmotic state.

作者信息

Baxter C F, Oh C C, Wasterlain C G, Ozaki L K, Baldwin R A

机构信息

Neurochemistry Laboratory V.A. Medical Center, Sepulveda, California 91343.

出版信息

Neurochem Res. 1991 Mar;16(3):269-78. doi: 10.1007/BF00966090.

Abstract

Seizure susceptibility and GABA metabolism were altered in the substantia nigra [SN] of adult male Sprague Dawley rats when these animals were acclimating to an altered plasma osmolality. Changes in GABA metabolism were measured in vivo in SN of the freely moving rat. Suitable precautions were taken to avoid any post-mortem flux of glutamate to GABA and to correct for the underestimation of GABA build up in SN due to the finite diffusion rate of gamma-vinyl GABA [GVG] after stereotaxic injection of small amounts into one side of the brain. Control experiments provided evidence that changes in osmolality, within a normal physiological range, did not affect significantly gamma-aminobutyric acid transaminase [GABA-T]. Also kindling via the medial septum [MS], in the absence of electrical stimulation did not alter GABA metabolism in SN, thus providing a stable baseline for studies of osmotic effects. Hyperosmolality was associated with a rise in seizure thresholds, with a marked reduction of the rate of GABA synthesis in SN, and with a substantial increase in turnover time of the GABA pool. Hypoosmolality, of a degree known to be associated with mild cerebral edema and swelling localized to astrocytes, markedly reduced seizure threshold, and reduced GABA pool size in SN, but did not alter the rate of GABA synthesis significantly. These results demonstrate by new and independent means the relationship between GABA metabolism in the SN and seizure susceptibility in vivo.

摘要

当成年雄性斯普拉格-道利大鼠适应血浆渗透压改变时,其黑质[SN]的癫痫易感性和γ-氨基丁酸(GABA)代谢发生了改变。在自由活动大鼠的黑质中对GABA代谢变化进行了体内测量。采取了适当的预防措施,以避免死后谷氨酸向GABA的任何通量,并校正由于向脑一侧立体定向注射少量γ-乙烯基GABA[GVG]后其有限的扩散速率导致的黑质中GABA积累的低估。对照实验提供了证据,即在正常生理范围内的渗透压变化不会显著影响γ-氨基丁酸转氨酶[GABA-T]。此外,在没有电刺激的情况下,通过内侧隔区[MS]点燃并不会改变黑质中的GABA代谢,从而为渗透压效应的研究提供了一个稳定的基线。高渗与癫痫阈值升高、黑质中GABA合成速率显著降低以及GABA池周转时间大幅增加有关。低渗程度已知与轻度脑水肿和星形胶质细胞局部肿胀有关,它显著降低癫痫阈值,并减少黑质中GABA池的大小,但并未显著改变GABA合成速率。这些结果通过新的独立方法证明了黑质中GABA代谢与体内癫痫易感性之间的关系。

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