The optic nerve head is the site of axonal transport disruption, axonal cytoskeleton damage and putative axonal regeneration failure in a rat model of glaucoma

被引:0
|
作者
Glyn Chidlow
Andreas Ebneter
John P. M. Wood
Robert J. Casson
机构
[1] South Australian Institute of Ophthalmology,Ophthalmic Research Laboratories
[2] Hanson Institute Centre for Neurological Diseases,Department of Ophthalmology and Visual Sciences
[3] University of Adelaide,undefined
来源
Acta Neuropathologica | 2011年 / 121卷
关键词
Glaucoma; Retinal ganglion cell; Optic nerve head; Axonal transport; Axon degeneration; Amyloid precursor protein;
D O I
暂无
中图分类号
学科分类号
摘要
The neurodegenerative disease glaucoma is characterised by the progressive death of retinal ganglion cells (RGCs) and structural damage to the optic nerve (ON). New insights have been gained into the pathogenesis of glaucoma through the use of rodent models; however, a coherent picture of the early pathology remains elusive. Here, we use a validated, experimentally induced rat glaucoma model to address fundamental issues relating to the spatio-temporal pattern of RGC injury. The earliest indication of RGC damage was accumulation of proteins, transported by orthograde fast axonal transport within axons in the optic nerve head (ONH), which occurred as soon as 8 h after induction of glaucoma and was maximal by 24 h. Axonal cytoskeletal abnormalities were first observed in the ONH at 24 h. In contrast to the ONH, no axonal cytoskeletal damage was detected in the entire myelinated ON and tract until 3 days, with progressively greater damage at later time points. Likewise, down-regulation of RGC-specific mRNAs, which are sensitive indicators of RGC viability, occurred subsequent to axonal changes at the ONH and later than in retinas subjected to NMDA-induced somatic excitotoxicity. After 1 week, surviving, but injured, RGCs had initiated a regenerative-like response, as delineated by Gap43 immunolabelling, in a response similar to that seen after ON crush. The data presented here provide robust support for the hypothesis that the ONH is the pivotal site of RGC injury following moderate elevation of IOP, with the resulting anterograde degeneration of axons and retrograde injury and death of somas.
引用
收藏
页码:737 / 751
页数:14
相关论文
共 50 条
  • [21] Effects of thiocolchicine on axonal cytoskeleton of the rat peroneus nerve
    Ferri, P
    Bruno, C
    Cecchini, T
    Ciaroni, S
    Ambrogini, P
    Guidi, L
    Cuppini, R
    Bombardelli, E
    Morazzoni, P
    Riva, A
    Del Grande, P
    EXPERIMENTAL AND TOXICOLOGIC PATHOLOGY, 2002, 54 (03) : 211 - 216
  • [22] Heterogeneous Distribution of Axonal Cytoskeleton Proteins in the Human Optic Nerve
    Balaratnasingam, Chandrakumar
    Morgan, William H.
    Johnstone, Victoria
    Cringle, Stephen J.
    Yu, Dao-Yi
    INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2009, 50 (06) : 2824 - 2838
  • [23] Cathepsin B promotes optic nerve axonal regeneration
    Zhang, Si
    Zhu, Hui
    Li, Guopei
    Zhu, Min
    NEUROREPORT, 2025, 36 (06) : 279 - 289
  • [24] Axonal regeneration of fish optic nerve after injury
    Matsukawa, T
    Arai, K
    Koriyama, Y
    Liu, ZW
    Kato, S
    BIOLOGICAL & PHARMACEUTICAL BULLETIN, 2004, 27 (04) : 445 - 451
  • [25] Ocular inflammation as a motor for axonal regeneration in the optic nerve
    Fischer, D.
    ACTA OPHTHALMOLOGICA, 2017, 95
  • [26] Traumatology of the optic nerve and contribution of crystallins to axonal regeneration
    Solon Thanos
    Michael R. R. Böhm
    Maurice Schallenberg
    Patrick Oellers
    Cell and Tissue Research, 2012, 349 : 49 - 69
  • [27] A semiautomated targeted sampling method to assess optic nerve axonal loss in a rat model of glaucoma
    Nephtali Marina
    Natalie D Bull
    Keith R Martin
    Nature Protocols, 2010, 5 : 1642 - 1651
  • [28] A semiautomated targeted sampling method to assess optic nerve axonal loss in a rat model of glaucoma
    Marina, Nephtali
    Bull, Natalie D.
    Martin, Keith R.
    NATURE PROTOCOLS, 2010, 5 (10) : 1642 - 1651
  • [29] Quantification of Retrograde Axonal Transport in the Rat Optic Nerve by Fluorogold Spectrometry
    van Oterendorp, Christian
    Sgouris, Stavros
    Bach, Michael
    Martin, Gottfried
    Biermann, Julia
    Jordan, Jens F.
    Lagreze, Wolf A.
    PLOS ONE, 2012, 7 (06):
  • [30] Traumatology of the optic nerve and contribution of crystallins to axonal regeneration
    Thanos, Solon
    Boehm, Michael R. R.
    Schallenberg, Maurice
    Oellers, Patrick
    CELL AND TISSUE RESEARCH, 2012, 349 (01) : 49 - 69