Department of Neurology, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, Institutes of Brain Science, Zhongshan Hospital, Fudan University, Shanghai, People's Republic of China.
Department of Ophthalmology, Zhongshan Hospital, Fudan University, Shanghai, People's Republic of China.
Invest Ophthalmol Vis Sci. 2019 Apr 1;60(5):1644-1656. doi: 10.1167/iovs.18-26359.
We investigate morphologic and physiologic alterations of ganglion cells (GCs) in a streptozocin (STZ)-induced diabetic mouse model.
Experiments were conducted in flat-mount retinas of mice 3 months after the induction of diabetes. Changes in morphology of four subtypes of GCs (ON-type RGA2 [ON-RGA2], OFF-type RGA2 [OFF-RGA2], ON-type RGC1 [ON-RGC1], and ON-OFF type RGD2 [ON-OFF RGD2]) were characterized in Thy1-YFP transgenic mice. Using whole-cell patch-clamp recording, passive membrane properties and action potential (AP) firing properties were further investigated in transient ON- and OFF-RGA2 cells.
Morphologic parameters were significantly altered in the dendrites branching in the ON sublamina of the inner plexiform layer (IPL) for ON-RGA2 cells and ON-OFF RGD2 cells. Much less significant changes, if any, were seen in those arborizing in the OFF sublamina of the IPL for OFF-RGA2 and ON-OFF RGD2 cells. No detectable changes in morphology were seen in RGC1 cells. Electrophysiologically, increased resting membrane potentials and decreased membrane capacitance were found in transient ON-RGA2 cells, but not in transient OFF-RGA2 cells. Similar alterations in AP firing properties, such as an increase in AP width and reduction in maximum spiking rate, were shared by these two subtypes. Furthermore, in response to depolarizing current injections, both cells generated more APs suggesting an enhanced excitability of these cells in diabetic conditions.
These differential changes in morphology and electrophysiology in subtypes of GCs may be responsible for reduced contrast sensitivity known to occur during the early stage of diabetic retinopathy.
我们研究了链脲佐菌素(STZ)诱导的糖尿病小鼠模型中神经节细胞(GCs)的形态和生理变化。
在糖尿病诱导 3 个月后,在小鼠的扁平视网膜上进行实验。在 Thy1-YFP 转基因小鼠中,对四种 GC 亚型(ON 型 RGA2 [ON-RGA2]、OFF 型 RGA2 [OFF-RGA2]、ON 型 RGC1 [ON-RGC1]和 ON-OFF 型 RGD2 [ON-OFF RGD2])的形态变化进行了表征。通过全细胞膜片钳记录,进一步研究了瞬时 ON 和 OFF-RGA2 细胞的被动膜特性和动作电位(AP)放电特性。
ON-RGA2 细胞和 ON-OFF RGD2 细胞在 IPL 的 ON 亚层中的树突分支的形态参数发生了显著变化。OFF-RGA2 和 ON-OFF RGD2 细胞在 IPL 的 OFF 亚层中分支的树突变化较小,如果有变化的话。RGC1 细胞的形态没有明显变化。电生理上,瞬时 ON-RGA2 细胞的静息膜电位增加,膜电容减小,但瞬时 OFF-RGA2 细胞则没有。AP 放电特性的相似变化,如 AP 宽度增加和最大放电率降低,这两种亚型都有。此外,在去极化电流注入时,两种细胞都产生了更多的 AP,表明这些细胞在糖尿病条件下的兴奋性增强。
GCs 亚型的形态和电生理的这些差异变化可能是糖尿病视网膜病变早期发生对比度敏感度降低的原因。