Department of Psychiatry and Behavioral Sciences, Emory University School of Medicine, Atlanta, Georgia 30329, USA.
J Neurophysiol. 2013 Aug;110(4):926-41. doi: 10.1152/jn.01105.2012. Epub 2013 May 29.
Many psychiatric disorders, including anxiety and autism spectrum disorders, have early ages of onset and high incidence in juveniles. To better treat and prevent these disorders, it is important to first understand normal development of brain circuits that process emotion. Healthy and maladaptive emotional processing involve the basolateral amygdala (BLA), dysfunction of which has been implicated in numerous psychiatric disorders. Normal function of the adult BLA relies on a fine balance of glutamatergic excitation and GABAergic inhibition. Elsewhere in the brain GABAergic transmission changes throughout development, but little is known about the maturation of GABAergic transmission in the BLA. Here we used whole cell patch-clamp recording and single-cell RT-PCR to study GABAergic transmission in rat BLA principal neurons at postnatal day (P)7, P14, P21, P28, and P35. GABAA currents exhibited a significant twofold reduction in rise time and nearly 25% reduction in decay time constant between P7 and P28. This corresponded with a shift in expression of GABAA receptor subunit mRNA from the α2- to the α1-subunit. The reversal potential for GABAA receptors transitioned from depolarizing to hyperpolarizing with age, from around -55 mV at P7 to -70 mV by P21. There was a corresponding shift in expression of opposing chloride pumps that influence the reversal, from NKCC1 to KCC2. Finally, we observed short-term depression of GABAA postsynaptic currents in immature neurons that was significantly and gradually abolished by P28. These findings reveal that in the developing BLA GABAergic transmission is highly dynamic, reaching maturity at the end of the first postnatal month.
许多精神疾病,包括焦虑症和自闭症谱系障碍,在青少年时期发病早且发病率高。为了更好地治疗和预防这些疾病,首先了解处理情绪的大脑回路的正常发育是很重要的。健康和适应不良的情绪处理涉及基底外侧杏仁核(BLA),其功能障碍与许多精神疾病有关。成年 BLA 的正常功能依赖于谷氨酸能兴奋和 GABA 能抑制之间的精细平衡。大脑的其他部位 GABA 能传递在整个发育过程中发生变化,但关于 BLA 中 GABA 能传递的成熟过程知之甚少。在这里,我们使用全细胞膜片钳记录和单细胞 RT-PCR 研究了出生后第 7、14、21、28 和 35 天的大鼠 BLA 主神经元中的 GABA 能传递。GABAA 电流的上升时间显著减少了两倍,衰减时间常数减少了近 25%。这与 GABAA 受体亚单位 mRNA 的表达从 α2 亚单位向 α1 亚单位转变相对应。GABAA 受体的反转电位随着年龄的增长从去极化转变为超极化,从 P7 时的约-55 mV 到 P21 时的-70 mV。影响反转的相反氯离子泵 NKCC1 到 KCC2 的表达也相应发生了转变。最后,我们观察到未成熟神经元中 GABAA 突触后电流的短时间抑制,这种抑制在 P28 时显著且逐渐消除。这些发现表明,在发育中的 BLA 中,GABAA 能传递非常动态,在第一个出生后月的月底达到成熟。