Patel A J, del Vecchio M, Atkinson D J
Dev Neurosci. 1978;1(1):41-53. doi: 10.1159/000112551.
The effect of undernutrition on the activity of glutamate decarboxylase (GAD) and choline acetyltransferase (ChAc) (markers for the GABA-ergic and the cholinergic transmitter system, respectively) was studied in various parts of the rat brain at the age of 10, 15 and 21 days, and at day 54 following 33 days of rehabilitation. The brain regions investigated were the olfactory bulbs, cerebellum, pons-medulla, hypothalamus, colliculi, cerebral cortex hippocampus and the residual brain. Undernutrition resulted in a marked retardation of the developmental rise of the activities of both enzymes, expressed in terms of either total brain part or unit weight or protein. The effect diminished with age even during the period of nutritional deprivation. In most brain regions the enzyme activities were restored to normal after rehabilitation. In the cerebral cortex the total activity of both enzymes was persistently reduced, although the concentration of GAD exceeded the control levels. A negative correlation was manifested between the activities of GAD and ChAc in the different brain parts (except the cerebellum) during development. The correlation became significant by day 21 in the controls, but only after postweaning rehabilitation of the undernourished rats. The results showed therefore that undernutrition caused a reversible retardation in the development of these two transmitter enzymes, and they suggested that even the balance of the GABA-ergic and cholinergic systems throughout the brain can be restored to normal by rehabilitation.
研究了营养不良对10日龄、15日龄和21日龄大鼠大脑各部位以及在33天康复后的第54天,谷氨酸脱羧酶(GAD,分别为γ-氨基丁酸能递质系统的标志物)和胆碱乙酰转移酶(ChAc,胆碱能递质系统的标志物)活性的影响。所研究的脑区包括嗅球、小脑、脑桥-延髓、下丘脑、丘脑、大脑皮层、海马体和剩余脑组织。营养不良导致这两种酶活性的发育性升高显著延迟,无论是以整个脑区还是单位重量或蛋白质来表示。即使在营养剥夺期间,这种影响也会随着年龄的增长而减弱。在大多数脑区,康复后酶活性恢复正常。在大脑皮层,这两种酶的总活性持续降低,尽管GAD的浓度超过了对照水平。在发育过程中,不同脑区(小脑除外)的GAD和ChAc活性之间呈现负相关。在对照组中,这种相关性在21日龄时变得显著,但仅在营养不良大鼠断奶后康复后才出现。因此,结果表明营养不良导致这两种递质酶的发育出现可逆性延迟,并且表明即使整个大脑中γ-氨基丁酸能和胆碱能系统的平衡也可以通过康复恢复正常。