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青光眼动物模型中慢性眼压升高后视网膜内层突触的改变。

Alterations of the synapse of the inner retinal layers after chronic intraocular pressure elevation in glaucoma animal model.

作者信息

Park Hae-Young Lopilly, Kim Jie Hyun, Park Chan Kee

机构信息

Department of Ophthalmology and Visual Science, Seoul St, Mary's Hospital, College of Medicine, The Catholic University of Korea, #505 Banpo-dong, Seocho-gu, Seoul 137-701, Korea.

出版信息

Mol Brain. 2014 Aug 13;7:53. doi: 10.1186/s13041-014-0053-2.

Abstract

BACKGROUND

Dendrites of retinal ganglion cells (RGCs) synapse with axon terminals of bipolar cells in the inner plexiform layer (IPL). Changes in RGC dendrites and synapses between bipolar cells in the inner retinal layer may critically alter the function of RGCs in glaucoma. Recently, synaptic plasticity has been observed in the adult central nervous system, including the outer retinal layers. However, few studies have focused on changes in the synapses between RGCs and bipolar cells in glaucoma. In the present study, we used a rat model of ocular hypertension induced by episcleral vein cauterization to investigate changes in synaptic structure and protein expression in the inner retinal layer at various time points after moderate intraocular pressure (IOP) elevation.

RESULTS

Synaptophysin, a presynaptic vesicle protein, increased throughout the IPL, outer plexiform layer, and outer nuclear layer after IOP elevation. Increased synaptophysin after IOP elevation was expressed in bipolar cells in the innermost IPL. The RGC marker, SMI-32, co-localized with synaptophysin in RGC dendrites and were significantly increased at 1 week and 4 weeks after IOP elevation. Both synaptophysin and postsynaptic vesicle protein, PSD-95, were increased after IOP elevation by western blot analysis. Ribbon synapses in the IPL were quantified and structurally evaluated in retinal sections by transmission electron microscopy. After IOP elevation the total number of ribbon synapses decreased. There were increases in synapse diameter and synaptic vesicle number and decreases in active zone length and the number of docked vesicles after IOP elevation.

CONCLUSIONS

Although the total number of synapses decreased as RGCs were lost after IOP elevation, there are attempts to increase synaptic vesicle proteins and immature synapse formation between RGCs and bipolar cells in the inner retinal layers after glaucoma induction.

摘要

背景

视网膜神经节细胞(RGCs)的树突在内网状层(IPL)与双极细胞的轴突终末形成突触。视网膜内层RGCs树突和双极细胞之间突触的变化可能会严重改变青光眼患者RGCs的功能。最近,在包括视网膜外层在内的成体中枢神经系统中观察到了突触可塑性。然而,很少有研究关注青光眼患者RGCs与双极细胞之间突触的变化。在本研究中,我们使用巩膜静脉烧灼诱导的高眼压大鼠模型,研究中度眼压(IOP)升高后不同时间点视网膜内层突触结构和蛋白质表达的变化。

结果

突触素是一种突触前囊泡蛋白,IOP升高后在整个IPL、外网状层和外核层均增加。IOP升高后增加的突触素在最内层IPL的双极细胞中表达。RGC标记物SMI-32与突触素在RGC树突中共定位,并且在IOP升高后1周和4周显著增加。通过蛋白质印迹分析,IOP升高后突触素和突触后囊泡蛋白PSD-95均增加。通过透射电子显微镜对视网膜切片中IPL的带状突触进行定量和结构评估。IOP升高后带状突触的总数减少。IOP升高后突触直径和突触囊泡数量增加,活性区长度和对接囊泡数量减少。

结论

尽管IOP升高后随着RGCs丢失突触总数减少,但青光眼诱导后视网膜内层RGCs与双极细胞之间存在增加突触囊泡蛋白和形成未成熟突触的尝试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acb8/4237962/870369e88119/s13041-014-0053-2-1.jpg

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