Boyett J M, Buckmaster P S
Department of Psychiatry and Behavioral Sciences, Stanford University, Stanford, California 94305-5330, USA.
Hippocampus. 2001;11(4):418-22. doi: 10.1002/hipo.1056.
Lateral inhibition, a feature of neuronal circuitry that enhances signaling specificity, has been demonstrated in the rat dentate gyrus. However, neither the underlying neuronal circuits, nor the ways in which these circuits are altered in temporal lobe epilepsy, are completely understood. This study examines the potential contribution of one class of inhibitory interneurons to lateral inhibitory circuits in the dentate gyrus of both control and epileptic rats. The retrograde tracer wheat germ ag-glutinin-apo-horse radish peroxidase-gold (WGA-apo-HRP-gold) was injected into the septal dentate gyrus. Neurons double-labeled for glutamic acid decarboxylase (GAD) and the retrograde tracer are concentrated in the hilus and may contribute to lateral inhibition. Neurons double-labeled for somatostatin and the retrograde tracer account for at least 28% of GAD-positive neurons with axon projections appropriate for generating lateral inhibition in control rats. Despite an overall loss of somatostatin-expressing cells in epileptic animals, the number of somatostatin-positive interneurons with axon projections appropriate for generating lateral inhibition is similar to that seen in controls. These findings suggest that somatostatinergic interneurons participate in lateral inhibitory circuits in the dentate gyrus of both control and epileptic rats, and that surviving somatostatinergic interneurons might sprout new axon collaterals in epileptic animals.
侧支抑制是一种增强信号特异性的神经回路特征,已在大鼠齿状回中得到证实。然而,其潜在的神经回路以及这些回路在颞叶癫痫中如何改变,目前尚未完全明确。本研究探讨了一类抑制性中间神经元对对照大鼠和癫痫大鼠齿状回侧支抑制回路的潜在作用。将逆行示踪剂小麦胚凝集素 - 脱辅基辣根过氧化物酶 - 金(WGA - apo - HRP - gold)注入隔区齿状回。谷氨酸脱羧酶(GAD)和逆行示踪剂双标的神经元集中在齿状回门区,可能对侧支抑制有作用。生长抑素和逆行示踪剂双标的神经元在对照大鼠中占至少28%的GAD阳性神经元,其轴突投射适合产生侧支抑制。尽管癫痫动物中表达生长抑素的细胞总体上有所减少,但具有适合产生侧支抑制的轴突投射的生长抑素阳性中间神经元数量与对照大鼠相似。这些发现表明,生长抑素能中间神经元参与了对照大鼠和癫痫大鼠齿状回的侧支抑制回路,并且存活的生长抑素能中间神经元可能在癫痫动物中萌发出新的轴突侧支。