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Expression of inducible heat shock proteins Hsp27 and Hsp70 in the visual pathway of rats subjected to various models of retinal ganglion cell injury

机译:诱导型热休克蛋白Hsp27和Hsp70在视网膜神经节细胞损伤模型大鼠视觉通路中的表达

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摘要

Inducible heat shock proteins (Hsps) are upregulated in the central nervous system in response to a wide variety of injuries. Surprisingly, however, no coherent picture has emerged regarding the magnitude, duration and cellular distribution of inducible Hsps in the visual system following injury to retinal ganglion cells (RGCs). The current study sought, therefore, to achieve the following two objectives. The first aim of this study was to systematically characterise the patterns of Hsp27 and -70 expression in the retina and optic nerve in four discrete models of retinal ganglion cell (RGC) degeneration: axonal injury (ON crush), somato-dendritic injury (NMDA-induced excitotoxicity), chronic hypoperfusion (bilateral occlusion of the carotid arteris) and experimental glaucoma. The second aim was to document Hsp27 and -70 expression in the optic tract, the subcortical retinorecipient areas of the brain, and the visual cortex during Wallerian degeneration of RGC axons. Hsp27 was robustly upregulated in the retina in each injury paradigm, with the chronic models, 2VO and experimental glaucoma, displaying a more persistent Hsp27 transcriptional response than the acute models. Hsp27 expression was always associated with astrocytes and with a subset of RGCs in each of the models excluding NMDA. Hsp27 was present within astrocytes of the optic nerve/optic tract in control rats. During Wallerian degeneration, Hsp27 was upregulated in the optic nerve/optic tract and expressed de novo by astrocytes in the lateral geniculate nucleus and the stratum opticum of the superior colliculus. Conversely, the results of our study indicate Hsp70 was minimally induced in any of the models of injury, either in the retina, or in the optic nerve/optic tract, or in the subcortical, retinorecipient areas of the brain. The findings of the present study augment our understanding of the involvement of Hsp27 and Hsp70 in the response of the visual system to RGC degeneration.
机译:响应多种损伤,中枢神经系统中的诱导型热激蛋白(Hsps)上调。然而,令人惊讶的是,关于视网膜神经节细胞(RGC)损伤后视觉系统中可诱导的Hsps的大小,持续时间和细胞分布,还没有出现连贯的画面。因此,本研究寻求实现以下两个目标。这项研究的第一个目的是系统性地表征视网膜神经节细胞(RGC)变性的四个离散模型:轴突损伤(ON压迫),体树突状损伤(NMDA)在视网膜和视神经中Hsp27和-70表达的模式。诱发的兴奋性毒性),慢性灌注不足(颈动脉的双侧闭塞)和实验性青光眼。第二个目的是证明在RGC轴突的Wallerian变性过程中,Hsp27和-70在视神经束,大脑皮层下视网膜区域和视觉皮层中的表达。在慢性损伤模型,2VO和实验性青光眼中,每种损伤模式中的视网膜Hsp27均强烈上调,与急性模型相比,Hsp27的转录反应更为持久。在除NMDA以外的每个模型中,Hsp27表达始终与星形胶质细胞和RGC的子集相关。 Hsp27存在于对照大鼠的视神经/视神经星形细胞中。在Wallerian变性期间,Hsp27在视神经/视神经系统中上调,并由外侧膝状核和上丘的视神经层中的星形胶质细胞从头表达。相反,我们的研究结果表明,在任何损伤模型中,无论是在视网膜中还是在视神经/视神经束中,或在大脑皮层下,视网膜受体区域,Hsp70都受到最小程度的诱导。本研究的发现加深了我们对Hsp27和Hsp70参与视觉系统对RGC变性的反应的理解。

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