Stastný F, Rothe F, Schmidt W, Wolf G, Keilhoff G, Lisý V
Institute of Physiology, Czechoslovak Academy of Sciences, Prague.
Brain Res. 1988 Oct 11;462(1):56-61. doi: 10.1016/0006-8993(88)90584-7.
To study possible functional involvement of gamma-glutamyl transpeptidase (GGT) in glutamate transmitter metabolism we lesioned putative glutamatergic structures of the rat hippocampal formation by intracerebroventricular (i.c.v.) injection of kainic acid (KA) or by surgical CA3 axotomy. Unilateral injection of KA into the left lateral cerebral ventricle of 30-day-old rats resulted in decreased GGT activity in hippocampal areas CA3, Ca1 ipsilaterally, and in the contralateral area CA1, four hours after the induction of the chemical lesion. Four days after the injection, the enzyme activity was decreased in all hippocampal areas with the exception of the contralateral dentate gyrus. Four days after bilateral i.c.v. injection of KA, lower GGT levels were found than was seen after bilateral surgical lesion of the CA3 pyramidal cell axons (Schaffer's collaterals). The surgical lesion was followed by a decrease of GGT only in the stratum pyramidale and stratum radiatum of area CA1. In contrast to the effects in 30-day-old rats, unilateral i.c.v. injection of KA on postnatal day 12 did not alter the GGT activity in any studied hippocampal area presumably because of incomplete maturation of structures required for KA vulnerability.
为了研究γ-谷氨酰转肽酶(GGT)在谷氨酸递质代谢中可能的功能参与情况,我们通过脑室内(i.c.v.)注射 kainic 酸(KA)或通过手术切断 CA3 轴突来损伤大鼠海马结构中假定的谷氨酸能结构。将 KA 单侧注射到 30 日龄大鼠的左侧侧脑室,在化学损伤诱导后 4 小时,海马区域 CA3、同侧的 Ca1 以及对侧区域 CA1 的 GGT 活性降低。注射后 4 天,除对侧齿状回外,所有海马区域的酶活性均降低。双侧脑室内注射 KA 4 天后,发现 GGT 水平低于双侧手术损伤 CA3 锥体细胞轴突(Schaffer 侧支)后的水平。手术损伤后,仅在 CA1 区的锥体层和放射层观察到 GGT 降低。与 30 日龄大鼠的情况不同,在出生后第 12 天单侧脑室内注射 KA 并未改变任何研究海马区域的 GGT 活性,这可能是因为 KA 易损性所需结构尚未完全成熟。