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Research Article

Effects of Nerve Growth Factor for Retinal Cell Survival in Experimental Retinal Detachment

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Pages 765-772 | Received 25 Feb 2007, Accepted 20 Jun 2007, Published online: 02 Jul 2009

REFERENCES

  • Wilkes S R, Beard C M, Kurland L T, et al. The incidence of retinal detachment in Rochester, Minnesota, 1970-1978. Am J Ophthalmol. 1982; 94: 670–673
  • Zou H, Zhang X, Xu X, et al. Epidemiology survey of rhegmatogenous retinal detachment in Beixinjing District, Shanghai, China. Retina. 2002; 22: 294–299
  • American Academy of Ophthalmology. The repair of rhegmatogenous retinal detachments. Ophthalmology 1996; 103: 1313–1316
  • Burton T C, Lambert R W, Jr. A predictive model for visual recovery following retinal detachment surgery. Ophthalmology 1978; 85: 619–625
  • Salicone A, Smiddy W E, Venkatraman A, et al. Visual recovery after scleral buckling procedure for retinal detachment. Ophthalmology. 2006; 113: 1734–1742
  • Anderson D H, Guérin C J, Erickson P A, et al. Morphological recovery in the reattached retina. Invest Ophthalmol Vis Sci. 1986; 27: 168–183
  • Wilson D J, Richard Green W. Histopathologic study of the effect of retinal detachment surgery on 49 eyes obtained post morterm. Am J Ophthalmol. 1987; 103: 167–179
  • Guerin C J, Lewis G P, Fisher S K, et al. Recovery of photoreceptor outer segment length and analysis of membrane assembly rates in regenerating primate photoreceptor out segments. Invest Ophthalmol Vis Sci. 1993; 34: 175–183
  • Lewis G P, Charteris D G, Sethi C S, et al. The ability of rapid retinal reattachment to stop or reverse the cellular and molecular events initiated by detachment. Invest Ophthalmol Vis Sci 2002; 43: 2412–2420
  • Fisher S K, Lewis G P, Linberg K A, et al. Cellular remodeling in mammalian retina: results from studies of experimental retinal detachment. Prog Retin Eye Res. 2005; 24: 395–431
  • Faude F, Francke M, Makarov F, et al. Experimental retinal detachment causes widespread and multilayered degeneration in rabbit retina. J Neurocytol. 2001; 30: 379–390
  • Cook B, Lewis G P, Fisher S K, et al. Apoptotic photoreceptor degeneration in experimental retinal detachment. Invest Ophthalmol Vis Sci. 1995; 36: 990–996
  • Chang C J, Lai W W, Edward D P, et al. Apoptotic photoreceptor cell death after traumatic retinal detachment in humans. Arch Ophthalmol. 1995; 113: 880–886
  • Berglin L, Algvere P V, Seregard S. Photoreceptor decay over time and apoptosis in experimental retinal detachment. Graefes Arch Clin Exp Ophthalmol. 1997; 235: 306–312
  • Hisatomi T, Sakamoto T, Goto Y, et al. Critical role of photoreceptor apoptosis in functional damage after retinal detachment. Curr Eye Res. 2002; 24: 161–172
  • Arroyo J G, Yang L, Bula D, et al. Photoreceptor apoptosis in human retinal detachment. Am J Ophthalmol. 2005; 139: 605–610
  • Mervin K, Valter K, Maslim J, et al. Limiting photoreceptor death and deconstruction during experimental retinal detachment: the value of oxygen supplementation. Am J Ophthalmol. 1999; 128: 155–164
  • Lewis G P, Talaga K C, Linberg K A, et al. The efficacy of delayed oxygen therapy in the treatment of experimental retinal detachment. Am J Ophthalmol. 2004; 137: 1085–1095
  • Lewis G P, Linberg K A, Geller S F, et al. Effects of the neurotrophin brain-derived neurotrophic factor in an experimental model of retinal detachment. Invest Ophthalmol Vis Sci. 1999; 40: 1530–1544
  • Wu W C, Lai C C, Chen S L, et al. Gene therapy for detached retina by adeno-associated virus vector expressing glial cell line-derived neurotrophic factor. Invest Ophthalmol Vis Sci. 2002; 43: 3480–3488
  • Lewis G P, Erickson P A, Guérin C J, et al. Basic fibroblast growth factor: a potential regulator of proliferation and intermediate filament expression in the retina. J Neurosci. 1992; 12: 3968–3978
  • Mervin K, Valter K, Maslim J, et al. Limiting photoreceptor death and deconstruction during experimental retinal detachment: the value of oxygen supplementation. Am J Ophthalmol. 1999; 128: 155–164
  • Levi-Montalcini R. The nerve growth factor 35 years later. Science. 1987; 237: 1154–1162
  • Kaplan D R, Martin-Zanca D, Parada L F. Tyrosine phosphorylation and tyrosine kinase activity of the trk proto-oncogene product induced by NGF. Nature. 991; 350: 158–160
  • Hallbook F, Backstrom A, Kullander K, et al. Expression of neurotrophins and trk receptors in the avian retina. J Comp Neurol. 1996; 364: 664–676
  • Oku H, Ikeda T, Honma Y, et al. Gene expression of neurotrophins and their high-affinity Trk receptors in cultured human Muller cells. Ophthalmic Res. 2002; 34: 38–42
  • Ruiz-Ederra J, Hitchcock P F, Vecino E. Two classes of astrocytes in the adult human and pig retina in terms of their expression of high affinity NGF receptor (TrkA). Neurosci Lett. 2003; 337: 127–130
  • Rickman D W, Brecha N C. Expression of the proto-oncogene, trk, receptors in the developing rat retina. Vis Neurosci. 1995; 12: 215–222
  • Garcia M, Forster V, Hicks D, et al. In vivo expression of neurotrophins and neurotrophin receptors is conserved in adult porcine retina in vitro. Invest Ophthalmol Vis Sci. 2003; 44: 4532–4541
  • Lambiase A, Aloe L. Nerve growth factor delays retinal degeneration in C3H mice. Graefes Arch Clin Exp Ophthalmol. 1996; 234: 96–100
  • Lambiase A, Centofanti M, Micera A, et al. Nerve growth factor (NGF) reduces and NGF antibody exacerbates retinal damage induced in rabbit by experimental ocular hypertension. Graefes Arch Clin Exp Ophthalmol. 1997; 235: 780–785
  • La Vail M M, Unoki K, Yasumura D, et al. Multiple growth factors, cytokines, and neurotrophins rescue photoreceptors from the damaging effects of constant light. Proc Natl Acad Sci USA. 1992; 89: 11249–11253
  • Steinberg R H. Survival factors in retinal degenerations. Curr Opin Neurobiol. 1994; 4: 515–524
  • Cohen A, Bray G M, Aguayo A J. Neurotrophin-4/5 (NT-4/5) increases adult rat retinal ganglion cell survival and neurite outgrowth in vitro. J Neurobiol. 1994; 25: 953–959
  • Lenzi L, Coassin M, Lambiase A, et al. Effect of exogenous administration of nerve growth factor in the retina of rats with inherited retinitis pigmentosa. Vision Res. 2005; 45: 1491–1500
  • Carmignoto G, Maffei L, Candeo P, et al. Effect of NGF on the survival of rat retinal ganglion cells following optic nerve section. J Neurosci. 1989; 9: 1263–1272
  • Tomita H, Ishiguro S, Abe T, et al. Administration of nerve growth factor, brain-derived neurotrophic factor and insulin-like growth factor-II protects phosphate-activated glutaminase in the ischemic and reperfused rat retinas. Tohoku J Exp Med. 1999; 187: 227–236
  • Siliprandi R, Canella R, Carmignoto G. Nerve growth factor promotes functional recovery of retinal ganglion cells after ischemia. Invest Ophthalmol Vis Sci. 1993; 34: 3232–3245
  • Mey J, Thanos S. Intravitreal injections of neurotrophic factors support the survival of axotomized retinal ganglion cells in adult rats in vivo. Brain Res. 1993; 602: 304–317
  • Yip H K, Johnson E M, Jr. Retrograde transport of nerve growth factor in lesioned gold fish retinal ganglion cells. J Neurosci 1983; 3: 2172–2182
  • Zacks D N, Zheng Q D, Han Y, et al. FAS-mediated apoptosis and its relation to intrinsic pathway activation in an experimental model of retinal detachment. Invest Ophthalmol Vis Sci. 2004; 45: 4563–4569
  • Nakazawa T, Matsubara A, Noda K, et al. Characterization of cytokine responses to retinal detachment in rats. Mol Vis. 2006; 12: 867–978
  • Gavrieli Y, Sherman Y, Ben-Sasson S A. Identification of programmed cell death in situ via specifc labeling of nuclear DNA fragmentation. J Cell Biol. 1992; 119: 493–501
  • Tomita H, Ishiguro S, Abe T, Tamai M. Administration of nerve growth factor, brain-derived neurotrophic factor and insulin-like growth factor-II protects phosphate-activated glutaminase in the ischemic and reperfused rat retinas. Tohoku J Exp Med. 1999; 187: 227–336
  • Davies A M. The role of neurotrophins in the developing nervous system. J Neurobiol. 1994; 25: 1334–1348
  • Edwards S N, Buckmaster A E, Tolkovsky A M. The death programme in cultured sympathetic neurones can be suppressed at the posttranslational level by nerve growth factor, cyclic AMP, and depolarization. J Neurochem. 1991; 57: 2140–2143
  • Hisatomi T, Sakamoto T, Murata T, et al. Relocalization of apoptosis-inducing factor in photoreceptor apoptosis induced by retinal detachment in vivo. Am J Pathol. 2001; 158: 1271–1278
  • Geller S F, Lewis G P, Fisher S K. FGFR1, signaling, and AP-1 expression after retinal detachment: reactive Muller and RPE cells. Invest Ophthalmol Vis Sci. 2001; 42: 1363–1369
  • Lewis G P, Linberg K A, Fisher S K. Neurite outgrowth from bipolar and horizontal cells after experimental retinal detachment. Invest Ophthalmol Vis Sci. 1998; 39: 424–434
  • Coblentz F E, Radeke M J, Lewis G P, et al. Evidence that ganglion cells react to retinal detachment. Exp Eye Res. 2003; 76: 333–342
  • Weibel D, Kreutzberg G W, Schwab M E. Brain-derived neurotrophic factor (BDNF) prevents lesion-induced axonal die-back in young rat optic nerve. Brain Res. 1995; 679: 249–254
  • Hu D N, Ritch R. Tissue culture of adult human retinal ganglion cells. J Glaucoma. 1997; 6: 37–43
  • Cohen A, Bray G M, Aguayo A J. Neurotrophin-4/5 (NT-4/5) increases adult rat retinal ganglion cell survival and neurite outgrowth in vitro. J Neurobiol. 1994; 25: 953–959

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