Al-Sarraf Hameed
Department of Physiology, Faculty of Medicine, Kuwait University, P.O. Box 24923, Safat-13110, Kuwait.
Brain Res Dev Brain Res. 2002 Dec 15;139(2):121-9. doi: 10.1016/s0165-3806(02)00537-0.
In general blood to brain entry of amino acids is greater in the neonatal rats compared to the adults. gamma-Aminobutyric acid (GABA), a neurotransmitter amino acid, shows limited transport across the blood-brain barrier (BBB) in the adult rat. Characteristics of GABA entry into the immature rat brain is yet to be addressed. This investigation was set to study the entry of GABA into brain of the neonatal rat compared to the adult. Using the bilateral in situ brain perfusion technique, the entry of 14C-GABA into brain, cerebrospinal fluid (CSF) and lateral ventricles choroid plexuses was studied in the adult and neonatal rats. 14C-GABA uptake into neonatal rat brain after 20 min perfusion was 0.116+/-0.014 ml g(-1), approximately twice that of the adults (P<0.01). Half saturation constant, K(m), did not change with age (P>0.05), whereas maximal transport into the brain, V(max), was reduced from 0.152 to 0.068 nmol min(-1) g(-1) showing a significant reduction with age (P<0.05). In the neonate the entry of GABA into the CSF was dominant when compared to that into the brain, this could be due to a greater diffusional component, K(d), which was detected to be high in the neonate. In conclusion, the uptake of 14C-GABA into brain of the immature rats exceeded that in the adults which is thought to be due to both greater maximal transport and greater diffusion in the neonate compared to the adult.
一般而言,与成年大鼠相比,新生大鼠中氨基酸从血液进入大脑的量更多。γ-氨基丁酸(GABA)是一种作为神经递质的氨基酸,在成年大鼠中穿过血脑屏障(BBB)的运输有限。GABA进入未成熟大鼠大脑的特征尚待研究。本研究旨在比较成年大鼠和新生大鼠中GABA进入大脑的情况。采用双侧原位脑灌注技术,研究了成年大鼠和新生大鼠中14C-GABA进入大脑、脑脊液(CSF)和侧脑室脉络丛的情况。灌注20分钟后,新生大鼠大脑对14C-GABA的摄取量为0.116±0.014 ml g(-1),约为成年大鼠的两倍(P<0.01)。半数饱和常数K(m)不随年龄变化(P>0.05),而大脑的最大转运量V(max)从0.152降至0.068 nmol min(-1) g(-1),显示出随年龄显著降低(P<0.05)。与进入大脑相比,在新生大鼠中GABA进入脑脊液占主导,这可能是由于检测到新生大鼠中较高的扩散成分K(d)。总之,未成熟大鼠大脑对14C-GABA的摄取超过成年大鼠,这被认为是由于与成年大鼠相比,新生大鼠中最大转运量更大且扩散性更强。