Journal of Postgraduate Medicine
 Open access journal indexed with Index Medicus & ISI's SCI  
Users online: 6032  
Home | Subscribe | Feedback | Login 
About Latest Articles Back-Issues Articlesmenu-bullet Search Instructions Online Submission Subscribe Etcetera Contact
 
Read this article

 


    Article Cited by others

REVIEW ARTICLE

Neuroprotection in glaucoma.

Kaushik S, Pandav S S, Ram J

Year : 2003| Volume: 49| Issue : 1 | Page no: 90-5

   This article has been cited by
 
1 Ocular hypotensive effect of fermented Pentaclethra macrophylla seeds in experimentally-induced glaucoma
Ikechukwu Jacob Okoro, Parker Elijah Joshua, Samuel Kyei, Innocent Uzochukwu Okagu, Christian Chijioke Amah, Vitus Ikenna Nnamani, Victor Nwadiogbu Ogugua
All Life. 2023; 16(1)
[Pubmed]  [Google Scholar] [DOI]
2 Unmet needs in glaucoma therapy: The potential role of hydrogen sulfide and its delivery strategies
Susmit Mhatre, Catherine A. Opere, Somnath Singh
Journal of Controlled Release. 2022; 347: 256
[Pubmed]  [Google Scholar] [DOI]
3 Correlation analysis of morphofunctional and immunological parameters in patients with advanced stages of primary open-angle glaucoma
V. I. Kotelin, M. V. Zueva, N. V. Balatskaya, S. Yu. Petrov, A. N. Zhuravleva, I. V. Tsapenko
National Journal glaucoma. 2022; 21(4): 3
[Pubmed]  [Google Scholar] [DOI]
4 A Review of Potential Novel Glaucoma Therapeutic Options Independent of Intraocular Pressure
Wesam Shamseldin Shalaby, Osama M. Ahmed, Michael Waisbourd, L. Jay Katz
Survey of Ophthalmology. 2021;
[Pubmed]  [Google Scholar] [DOI]
5 EFFECT OF N-ACETYLCARNOSINE CONTAINED EYE DROP ON CATECHOLAMINE-INDUCED MORPHOFUNCTIONAL DAMAGE IN RAT RETINA
V.V. Sanin, A.I. Yakovets, K.V. Rozova, Yu.P. Korkach, Yu.V. Goshovska, I.V. Shargorodska, S.O. Rykov
Fiziolohichnyi zhurnal. 2020; 66(4): 64
[Pubmed]  [Google Scholar] [DOI]
6 Translational Preclinical Pharmacologic Disease Models for Ophthalmic Drug Development
Mihir Shah, Sara Cabrera-Ghayouri, Lori-Ann Christie, Katherine S. Held, Veena Viswanath
Pharmaceutical Research. 2019; 36(4)
[Pubmed]  [Google Scholar] [DOI]
7 Fusaric Acid immunotoxicity and MAPK activation in normal peripheral blood mononuclear cells and Thp-1 cells
Shanel Dhani, Savania Nagiah, Dhaneshree B. Naidoo, Anil A. Chuturgoon
Scientific Reports. 2017; 7(1)
[Pubmed]  [Google Scholar] [DOI]
8 Neuroprotective effects of intravitreally transplanted adipose tissue and bone marrow–derived mesenchymal stem cells in an experimental ocular hypertension model
Esra Emre,Nursen Yüksel,Gökhan Duruksu,Dilara Pirhan,Cansu Subasi,Gülay Erman,Erdal Karaöz
Cytotherapy. 2015; 17(5): 543
[Pubmed]  [Google Scholar] [DOI]
9 Anti-glaucoma potential of Heliotropium indicum Linn in experimentally-induced glaucoma
Samuel Kyei,George Asumeng Koffuor,Paul Ramkissoon,Osei Owusu-Afriyie
Eye and Vision. 2015; 2(1)
[Pubmed]  [Google Scholar] [DOI]
10 Visual improvement following glaucoma surgery: a case report
William S Foulsham,Lanxing Fu,Andrew J Tatham
BMC Ophthalmology. 2014; 14(1): 162
[Pubmed]  [Google Scholar] [DOI]
11 Protective effects of the compounds isolated from the seed of Psoralea corylifolia on oxidative stress-induced retinal damage
Kyung-A Kim,Sang Hee Shim,Hong Ryul Ahn,Sang Hoon Jung
Toxicology and Applied Pharmacology. 2013; 269(2): 109
[Pubmed]  [Google Scholar] [DOI]
12 What can we learn about stroke from retinal ischemia models?
Philippe M DæOnofrio, Paulo D Koeberle
Acta Pharmacologica Sinica. 2013; 34(1): 91
[HTML Full text]  [Google Scholar] [DOI]
13 Neuroprotective Effect of Protease-Activated Receptor-2 in the Hypoxia-Induced Apoptosis of Rat RGC-5 Cells
Yanli Peng,Jiaping Zhang,Haiwei Xu,Jianrong He,Xi Ying,Yi Wang
Journal of Molecular Neuroscience. 2013; 50(1): 98
[Pubmed]  [Google Scholar] [DOI]
14 Adenosine, adenosine receptors and glaucoma: An updated overview
Yisheng Zhong,Zijian Yang,Wei-Chieh Huang,Xunda Luo
Biochimica et Biophysica Acta (BBA) - General Subjects. 2013; 1830(4): 2882
[Pubmed]  [Google Scholar] [DOI]
15 SUN N8075, a novel radical scavenger, protects against retinal cell death in mice
Mai Akane, Masamitsu Shimazawa, Yuta Inokuchi, Kazuhiro Tsuruma, Hideaki Hara
Neuroscience Letters. 2011; 488(1): 87
[HTML Full text]  [Google Scholar] [DOI]
16 Topographic relationship between frequency-doubling technology threshold values : Acta Ophthalmologica 2011
Isabel Fuertes-Lazaro, Ana Sanchez-Cano, Antonio Ferreras, Jose M. Larrosa, Elena Garcia-Martin, Luis E. Pablo
Acta Ophthalmologica. 2011; : no
[HTML Full text]  [Google Scholar] [DOI]
17 Magnetic resonance in studies of glaucoma
Michal Fiedorowicz,Wojciech Dyda,Robert Rejdak,Pawel Grieb
Medical Science Monitor. 2011; 17(10): RA227
[Pubmed]  [Google Scholar] [DOI]
18 The role of melatonin in glaucoma: implications concerning pathophysiological relevance and therapeutic potential : Melatonin in glaucoma
Agorastos Agorastos, Christian G. Huber
Journal of Pineal Research. 2011; 50(1): 1
[HTML Full text]  [Google Scholar] [DOI]
19 Nanotechnology applications and approaches for neuroregeneration and drug delivery to the central nervous system : Nanotechnology approaches for CNS neuroregeneration
Gabriel A. Silva
Annals of the New York Academy of Sciences. 2010; 1199(1): 221
[HTML Full text]  [Google Scholar] [DOI]
20 Melatonin: a novel neuroprotectant for the treatment of glaucoma
Nicolás A. Belforte, María C. Moreno, Nuria de Zavalía, Pablo H. Sande, Mónica S. Chianelli, María I. Keller Sarmiento, Ruth E. Rosenstein
Journal of Pineal Research. 2010; 48(4): 353-364
[Pubmed]  [Google Scholar] [DOI]
21 Rapid and Noninvasive Imaging of Retinal Ganglion Cells in Live Mouse Models of Glaucoma
Joaquin Tosi, Nan-Kai Wang, Jin Zhao, Chai Lin Chou, J. Mie Kasanuki, Stephen H. Tsang, Takayuki Nagasaki
Molecular Imaging and Biology. 2010; 12(4): 386
[HTML Full text]  [Google Scholar] [DOI]
22 Current concepts in the pathophysiology of glaucoma
Agarwal, R., Gupta, S.K., Agarwal, P., Saxena, R., Agrawal, S.
Indian Journal of Ophthalmology. 2009; 57(4): 257-266
[Pubmed]  [Google Scholar]
23 Agmatine protects cultured retinal ganglion cells from tumor necrosis factor-alpha-induced apoptosis
Hong, S., Kim, C.Y., Lee, J.E., Seong, G.J.
Life Sciences. 2009; 84((1-2)): 28-32
[Pubmed]  [Google Scholar]
24 Glaucoma alters the expression of NGF and NGF receptors in visual cortex and geniculate nucleus of rats: Effect of eye NGF application
Sposato, V., Parisi, V., Manni, L., Antonucci, M.T., Fausto, V.D., Sornelli, F., Aloe, L.
Vision Research. 2009; 49(1): 54-63
[Pubmed]  [Google Scholar]
25 Retinal cell apoptosis
Sarah Catherine Borrie, James Duggan, M Francesca Cordeiro
Expert Review of Ophthalmology. 2009; 4(1): 27
[HTML Full text]  [Google Scholar] [DOI]
26 Agmatine protects cultured retinal ganglion cells from tumor necrosis factor-alpha-induced apoptosis
Samin Hong,Chan Yun Kim,Jong Eun Lee,Gong Je Seong
Life Sciences. 2009; 84(1-2): 28
[Pubmed]  [Google Scholar] [DOI]
27 A Na+/Ca2+ exchanger isoform, NCX1, is involved in retinal cell death after N-methyl-D-aspartate injection and ischemia-reperfusion
Y. Inokuchi, M. Shimazawa, Y. Nakajima, I. Komuro, T. Matsuda, A. Baba, M. Araie, S. Kita, T. Iwamoto, H. Hara
Journal of Neuroscience Research. 2009; 87(4): 906-917
[Pubmed]  [Google Scholar] [DOI]
28 Glaucoma alters the expression of NGF and NGF receptors in visual cortex and geniculate nucleus of rats: Effect of eye NGF application
Valentina Sposato,Vincenzo Parisi,Luigi Manni,Maria Teresa Antonucci,Veronica Di Fausto,Federica Sornelli,Luigi Aloe
Vision Research. 2009; 49(1): 54
[Pubmed]  [Google Scholar] [DOI]
29 Effect of ocular hypertension on retinal GABAergic activity
María Cecilia Moreno,Nuria de Zavalía,Pablo Sande,Carolina O. Jaliffa,Diego C. Fernandez,María Inés Keller Sarmiento,Ruth E. Rosenstein
Neurochemistry International. 2008; 52(4-5): 675
[Pubmed]  [Google Scholar] [DOI]
30 Reduced NGF level and TrkA protein and TrkA gene expression in the optic nerve of rats with experimentally induced glaucoma
Valentina Sposato,Massimo Gilberto Bucci,Marco Coassin,Matteo Antonio Russo,Alessandro Lambiase,Luigi Aloe
Neuroscience Letters. 2008; 446(1): 20
[Pubmed]  [Google Scholar] [DOI]
31 Oxidative Stress in Primary Open-angle Glaucoma
Vicente Zanon-Moreno,Pilar Marco-Ventura,Antonio Lleo-Perez,Sheila Pons-Vazquez,Jose J. Garcia-Medina,Ignacio Vinuesa-Silva,Maria A. Moreno-Nadal,Maria Dolores Pinazo-Duran
Journal of Glaucoma. 2008; 17(4): 263
[Pubmed]  [Google Scholar] [DOI]
32 Progressive damage along the optic nerve following induction of crush injury or rodent anterior ischemic optic neuropathy in transgenic mice
Dratviman-Storobinsky, O., Hasanreisoglu, M., Offen, D., Barhum, Y., Weinberger, D., Goldenberg-Cohen, N.
Molecular Vision. 2008; 14: 2171-2179
[Pubmed]  [Google Scholar]
33 Reduced NGF level and TrkA protein and TrkA gene expression in the optic nerve of rats with experimentally induced glaucoma
Sposato, V., Bucci, M.G., Coassin, M., Russo, M.A., Lambiase, A., Aloe, L.
Neuroscience Letters. 2008; 446(1): 20-24
[Pubmed]  [Google Scholar]
34 Regulation of retinal morphology and posterior segment amino acids by 8-isoprostaglandin E2 in bovine eyes ex vivo
Zhao, M., Destache, C.J., Zhan, G., Liu, H., Zhang, Y., Govindarajan, V., Opere, C.A.
Methods and Findings in Experimental and Clinical Pharmacology. 2008; 30(8): 615-626
[Pubmed]  [Google Scholar]
35 Oxidative stress in primary open-angle glaucoma
Zanon-Moreno, V., Marco-Ventura, P., Lleo-Perez, A., Pons-Vazquez, S., Garcia-Medina, J.J., Vinuesa-Silva, I., Moreno-Nadal, M.A., Pinazo-Duran, M.D.
Journal of Glaucoma. 2008; 17(4): 263-268
[Pubmed]  [Google Scholar]
36 Assessment of neuroprotection in the retina with DARC
Guo, L., Cordeiro, M.F.
Progress in Brain Research. 2008; 173: 437-450
[Pubmed]  [Google Scholar]
37 Agmatine inhibits hypoxia-induced TNF-α release from cultured retinal ganglion cells
Hong, S., Park, K., Kim, C.Y., Seong, G.J.
Biocell. 2008; 32(2): 201-205
[Pubmed]  [Google Scholar]
38 Effect of crocus sativus on SOD and MDA alterations in the retina of rabbits with chronic ocular hypertension
Yang, X.-G., Sun, D.-J., Wang, Y.-W., Jin, W.-L., Wang, X.-J., Duan, X.-L.
International Journal of Ophthalmology. 2008; 8(1): 47-49
[Pubmed]  [Google Scholar]
39 Effect of ocular hypertension on retinal GABAergic activity
Moreno MC, de Zavalia N, Sande P, et al.
NEUROCHEMISTRY INTERNATIONAL. 2008; 52(4-5): 675-682
[Pubmed]  [Google Scholar]
40 Glaucoma is a neuronal disease
Caprioli J
EYE. 2007; 21((SUPPL 1)): S6-S10
[Pubmed]  [Google Scholar]
41 Morphological and functional changes in experimental ocular hypertension and role of neuroprotective drugs
Garcia-Campos J, Villena A, Diaz F, et al.
HISTOLOGY AND HISTOPATHOLOGY. 2007; 22 (10-12): 1399-1411
[Pubmed]  [Google Scholar]
42 Effect of 2-(6-cyano-1-hexyn-1-yl)adenosine on ocular blood flow in rabbits
Konno T, Uchibori T, Nagai A, et al.
LIFE SCIENCES. 2007; 80 (12): 1115-1122
[Pubmed]  [Google Scholar]
43 Neuroprotective and Intraocular pressure-lowering effects of (-)Delta 9-tetrahydrocannabinol in a rat model of glaucoma
Crandall J, Matragoon S, Khalifa YM, et al.
OPHTHALMIC RESEARCH. 2007; 39 (2): 69-75
[Pubmed]  [Google Scholar]
44 Chondroitin sulfate-derived disaccharide protects retinal cells from elevated intraocular pressure in aged and immunocompromised rats
Bakalash S, Rolls A, Lider O, et al.
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE. 2007; 48 (3): 1181-1190
[Pubmed]  [Google Scholar]
45 Retinal ganglion cell protection by 17-beta-estradiol in a mouse model of inherited glaucoma
Zhou XH, Li F, Ge J, et al.
DEVELOPMENTAL NEUROBIOLOGY. 2007; 67 (5): 603-616
[Pubmed]  [Google Scholar]
46 Effect of ocular hypertension on retinal nitridergic pathway activity
Belforte, N., Moreno, M.C., Cymeryng, C., Bordone, M., Keller Sarmiento, M.I., Rosenstein, R.E.
Investigative Ophthalmology and Visual Science. 2007; 48(5): 2127-2133
[Pubmed]  [Google Scholar]
47 Immune factors and glaucoma
Ma, J.-Z., He, X.-G.
International Journal of Ophthalmology. 2007; 7(5): 1379-1383
[Pubmed]  [Google Scholar]
48 Retinal ganglion cell protection by 17-ß-estradiol in a mouse model of inherited glaucoma
Xiaohong Zhou,Feng Li,Jian Ge,Steven R. Sarkisian,Hiroshi Tomita,Alexander Zaharia,James Chodosh,Wei Cao
Developmental Neurobiology. 2007; 67(5): 603
[Pubmed]  [Google Scholar] [DOI]
49 Melatonin in the eye: Implications for glaucoma
Per O. Lundmark, S.R. Pandi-Perumal, V. Srinivasan, D.P. Cardinali, R.E. Rosenstein
Experimental Eye Research. 2007; 84(6): 1021
[HTML Full text]  [Google Scholar] [DOI]
50 Effect of 2-(6-cyano-1-hexyn-1-yl)adenosine on ocular blood flow in rabbits
Takashi Konno,Takehiro Uchibori,Akihiko Nagai,Kentaro Kogi,Norimichi Nakahata
Life Sciences. 2007; 80(12): 1115
[Pubmed]  [Google Scholar] [DOI]
51 Glaucoma is a neuronal disease
J Caprioli
Eye. 2007; 21: S6
[Pubmed]  [Google Scholar] [DOI]
52 Estrogen has a neuroprotective effect on axotomized RGCs through ERK signal transduction pathway
Toru Nakazawa,Hidetoshi Takahashi,Masahiko Shimura
Brain Research. 2006; 1093(1): 141
[Pubmed]  [Google Scholar] [DOI]
53 Assessment of neuroprotective effects of glutamate modulation on glaucoma-related retinal ganglion cell apoptosis in vivo
Guo L, Salt TE, Maass A, Luong V, Moss SE, Fitzke FW, Cordeiro MF
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE. 2006; 47 (2): 626-633
[Pubmed]  [Google Scholar]
54 Retinal growth hormone in perinatal and adult rats
Harvey S, Baudet ML, Sanders EJ
JOURNAL OF MOLECULAR NEUROSCIENCE. 2006; 28 (3): 257-264
[Pubmed]  [Google Scholar]
55 Adenosine A2A receptor mediated protective effect of 2-(6cyano-1-hexyn-1-yl) adenosine on retinal ischaemia/reperfusion damage in rats
Konno T, Sato A, Uchibori T, et al.
BRITISH JOURNAL OF OPHTHALMOLOGY. 2006; 90 (7): 900-905
[Pubmed]  [Google Scholar]
56 Estrogen has a neuroprotective effect on axotomized RGCs through ERK signal transduction pathway
Nakazawa T, Takahashi H, Shimura M
BRAIN RESEARCH. 2006; 1093(1): 141-149
[Pubmed]  [Google Scholar]
57 Neuroprotective effect of latanoprost on rat retinal ganglion cells
Kudo H, Nakazawa T, Shimura M, Hidetoshi Takahashi, Nobuo Fuse, Kenji Kashiwagi, Makoto Tamai
GRAEFES ARCHIVE FOR CLINICAL AND EXPERIMENTAL OPHTHALMOLOGY. 2006; 244 (8): 1003-1009
[Pubmed]  [Google Scholar]
58 Inhibitive effect of genistein on interleukin-8 expression in cultured human retinal pigment epithelial cells
Li H, Pan JS, Wang B
METHODS AND FINDINGS IN EXPERIMENTAL AND CLINICAL PHARMACOLOGY. 2006; 28 (5): 295-299
[Pubmed]  [Google Scholar]
59 Effect of acathopanax senticosus on the level of glutamate and NO on the retina in high ocular pressure models
Gao, D.-W., Shao, L., Yang, Y.
International Journal of Ophthalmology. 2006; 6(6): 1294-1296
[Pubmed]  [Google Scholar]
60 Accuracy assessment and implementation of an electromagnetically-tracked endoscopic orbital navigation system
Sztipanovits, D.R., Galloway, R., Mawn, L.A.
Progress in Biomedical Optics and Imaging - Proceedings of SPIE. 2005; 5744(II ): 648-660
[Pubmed]  [Google Scholar]
61 Pigment epithelium-derived factor is a substrate for matrix metalloproteinase type 2 and type 9: Implications for downregulation in hypoxia
Notari L, Miller A, Martinez A, Amaral J, Ju MH, Robinson G, Smith LEH, Becerra SP
INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE. 2005; 46 (8): 2736-2747
[Pubmed]  [Google Scholar]
62 Pharmacological consequences of oxidative stress in ocular tissues
Ohia SE, Opere CA, LeDay AM
MUTATION RESEARCH-FUNDAMENTAL AND MOLECULAR MECHANISMS OF MUTAGENESIS. 2005; 579 (1-2): 22-36
[Pubmed]  [Google Scholar]
63 Small neuroscience: The nanostructure of the central nervous system and emerging nanotechnology applications
Silva GA
CURRENT NANOSCIENCE. 2005; 1 (3): 225-236
[Pubmed]  [Google Scholar]
64 Effect of glaucoma on the retinal glutamate/glutamine cycle activity
Moreno MC, Sande P, Marcos HA, de Zavalia N, Sarmiento MIK, Rosenstein RE
FASEB JOURNAL. 2005; 19 (7): MAY
[Pubmed]  [Google Scholar]
65 Nanotechnology approaches for the regeneration and neuroprotection of the central nervous system
Silva GA
SURGICAL NEUROLOGY. 2005; 63 (4): 301-306
[Pubmed]  [Google Scholar]
66 Effect of glaucoma on the retinal glutamate/glutamine cycle activity
Maria Cecilia Moreno, Pablo Sande, Hernán Aldana Marcos, Nuria De Zavalía, Maria Inés Keller Sarmiento, Ruth E. Rosenstein
The FASEB Journal. 2005; 19(9): 1161
[Pubmed]  [Google Scholar] [DOI]
67 Pharmacological consequences of oxidative stress in ocular tissues
Sunny E. Ohia,Catherine A. Opere,Angela M. LeDay
Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis. 2005; 579(1-2): 22
[Pubmed]  [Google Scholar] [DOI]
68 Nanotechnology approaches for the regeneration and neuroprotection of the central nervous system
Gabriel A. Silva
Surgical Neurology. 2005; 63(4): 301
[Pubmed]  [Google Scholar] [DOI]
69 New therapies for glaucoma: are they all up to the task?
Thomas Yorio,Adnan Dibas
Expert Opinion on Therapeutic Patents. 2004; 14(12): 1743
[Pubmed]  [Google Scholar] [DOI]
70 Retinal Oxidative Stress Induced by High Intraocular Pressure
María Cecilia Moreno,Julieta Campanelli,Pablo Sande,Daniel A. Sáenz,María Inés Keller Sarmiento,Ruth E. Rosenstein
Free Radical Biology and Medicine. 2004; 37(6): 803
[Pubmed]  [Google Scholar] [DOI]
71 New therapies for glaucoma: are they all up to the task?
Yorio T, Dibas A
EXPERT OPINION ON THERAPEUTIC PATENTS. 2004; 14 (12): 1743-1762
[Pubmed]  [Google Scholar]
72 Change of retinal ganglion cells in the ocular hyertension model rat
Ito, T., Ohguro, H., Ohguro, I., Mamiya, K., Ishikawa, F., Metoki, T., Yamazaki, H., et al
Hirosaki Medical Journal. 2004; 56(1): 15-20
[Pubmed]  [Google Scholar]
73 Retinal oxidative stress induced by high intraocular pressure
Moreno, M.C., Campanelli, J., Sande, P., Sáenz, D.A., Keller Sarmiento, M.I., Rosenstein, R.E.
FREE RADICAL BIOLOGY AND MEDICINE. 2004; 37 (6): 803-812
[Pubmed]  [Google Scholar]
74 Perspective of neuroprotective treatment for glaucomatous optic neuropathy
Nakamura, M.
Japanese Journal of Clinical Ophthalmology. 2004; 58(6): 887-891
[Pubmed]  [Google Scholar]

 

Online since 12th February '04
© 2004 - Journal of Postgraduate Medicine
Official Publication of the Staff Society of the Seth GS Medical College and KEM Hospital, Mumbai, India
Published by Wolters Kluwer - Medknow