scholarly article | Q13442814 |
P2093 | author name string | John P M Wood | |
Anthony J Bron | |||
Gerassimos Lascaratos | |||
Neville N Osborne | |||
P2860 | cites work | Electrophoretic transfer of proteins from polyacrylamide gels to nitrocellulose sheets: procedure and some applications | Q24561689 |
Wavelengths effective in induction of malignant melanoma | Q24562127 | ||
Reactive oxygen species in spermatozoa: methods for monitoring and significance for the origins of genetic disease and infertility | Q24812652 | ||
Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4 | Q25938983 | ||
Rapid colorimetric assay for cellular growth and survival: Application to proliferation and cytotoxicity assays | Q25939005 | ||
Emerging roles of caspase-3 in apoptosis | Q28141417 | ||
Strange vision: ganglion cells as circadian photoreceptors | Q28178177 | ||
The Fas signaling pathway: more than a paradigm | Q28201953 | ||
Phototransduction by retinal ganglion cells that set the circadian clock | Q28217956 | ||
Mitochondrial dysfunction as a cause of optic neuropathies | Q28242704 | ||
Do blue light filters confer protection against age-related macular degeneration? | Q28276300 | ||
Melanopsin-dependent photoreception provides earliest light detection in the mammalian retina. | Q30619594 | ||
Blue light-induced apoptosis in cultured retinal pigment epithelium cells of the rat. | Q30660599 | ||
Blood-retinal barrier dysfunction at the pigment epithelium induced by blue light | Q30998585 | ||
Mitochondrial reactive oxygen species generation and calcium increase induced by visible light in astrocytes | Q31057597 | ||
Exposure geometry and spectral environment determine photobiological effects on the human eye. | Q31152119 | ||
Characterization of a transformed rat retinal ganglion cell line | Q31878268 | ||
Effects of oxidants and glutamate receptor activation on mitochondrial membrane potential in rat forebrain neurons. | Q31964883 | ||
Apoptosis: biochemical aspects and clinical implications | Q33185094 | ||
Neuroprotective effects of minocycline against in vitro and in vivo retinal ganglion cell damage | Q33220548 | ||
Nitric oxide: a potential mediator of retinal ganglion cell damage in glaucoma | Q33693579 | ||
Apoptosis of retinal ganglion cells in glaucoma: an update of the molecular pathways involved in cell death | Q33693595 | ||
Optic nerve head structure in glaucoma: astrocytes as mediators of axonal damage | Q34057614 | ||
Biologic mechanisms of the protective role of lutein and zeaxanthin in the eye. | Q34182531 | ||
Death receptors. | Q34273093 | ||
A hypothesis to explain ganglion cell death caused by vascular insults at the optic nerve head: possible implication for the treatment of glaucoma | Q34377317 | ||
Retinal photodamage. | Q34463809 | ||
Photoprotection of the eye - UV radiation and sunglasses | Q34463815 | ||
Increased production of reactive oxygen species in hyperglycemic conditions requires dynamic change of mitochondrial morphology | Q34479807 | ||
p53-related pathways and the molecular pathogenesis of melanoma | Q35097282 | ||
Mitochondrial control of apoptosis: an introduction | Q35120704 | ||
The distributions of mitochondria and sodium channels reflect the specific energy requirements and conduction properties of the human optic nerve head | Q35591713 | ||
A2E, a fluorophore of RPE lipofuscin: can it cause RPE degeneration? | Q35793654 | ||
Bioenergetics shapes cellular death pathways in Leber's hereditary optic neuropathy: a model of mitochondrial neurodegeneration | Q35849790 | ||
Reactive oxygen species and the mitochondrial signaling pathway of cell death | Q35971626 | ||
Ultraviolet and near-blue light effects on the eye. | Q35999955 | ||
Ultraviolet radiation and skin cancer: molecular mechanisms | Q36034693 | ||
Glaucoma: thinking in new ways-a rôle for autonomous axonal self-destruction and other compartmentalised processes? | Q36161727 | ||
Neuroprotective effect of an antioxidant in ischemic brain injury: involvement of neuronal apoptosis | Q36262728 | ||
Carotenoid actions and their relation to health and disease | Q36323052 | ||
The role of oxidative stress in glaucoma | Q36368431 | ||
A hypothesis to suggest that light is a risk factor in glaucoma and the mitochondrial optic neuropathies | Q36373032 | ||
Activation of flavin-containing oxidases underlies light-induced production of H2O2 in mammalian cells. | Q37203168 | ||
High mutation frequency at Ha-ras exons 1-4 in squamous cell carcinomas from PUVA-treated psoriasis patients | Q38297168 | ||
Flavonoids protect retinal ganglion cells from oxidative stress-induced death | Q40348410 | ||
Serum deprivation induces apoptotic cell death of transformed rat retinal ganglion cells via mitochondrial signaling pathways | Q40442542 | ||
The molecular basis of oxidative stress-induced cell death in an immortalized retinal ganglion cell line. | Q40465472 | ||
Mitochondria-derived reactive oxygen species mediate blue light-induced death of retinal pigment epithelial cells | Q40546919 | ||
Neuronal death in glaucoma | Q40827206 | ||
Substrate-dependence of reduction of MTT: a tetrazolium dye differs in cultured astroglia and neurons | Q43872624 | ||
Involvement of oxidative mechanisms in blue-light-induced damage to A2E-laden RPE. | Q43940061 | ||
Mitochondrial complex I inhibitor rotenone induces apoptosis through enhancing mitochondrial reactive oxygen species production | Q44258988 | ||
Energy substrate requirements of rat retinal pigmented epithelial cells in culture: relative importance of glucose, amino acids, and monocarboxylates | Q44810087 | ||
Blue light induces mitochondrial DNA damage and free radical production in epithelial cells | Q46410687 | ||
p16 and p21WAF1 protein expression in melanocytic tumors by immunohistochemistry | Q47895326 | ||
The distribution of mitochondrial activity in relation to optic nerve structure | Q48587524 | ||
Selective photoreceptor damage in albino rats using continuous blue light. A protocol useful for retinal degeneration and transplantation research. | Q50509862 | ||
Comparison of the LDH and MTT assays for quantifying cell death: validity for neuronal apoptosis? | Q50513464 | ||
Function and morphology of the retinal pigment epithelium after light-induced damage. | Q50531253 | ||
Blue light hazard in rat. | Q50883158 | ||
TUNEL-positive ganglion cells in human primary open-angle glaucoma. | Q50941032 | ||
Dysfunction and repair of the blood-retina barrier following white light exposure: a fluorophotometric and histologic study | Q52479002 | ||
Inhibition of mitochondrial respiratory chain complex I by TNF results in cytochrome c release, membrane permeability transition, and apoptosis. | Q52566730 | ||
Superoxide anion is generated from cellular metabolites by solar radiation and its components. | Q53547906 | ||
Retinal degeneration produced by low-intensity colored light | Q70386223 | ||
Retinal damage after prolonged exposure to visible light. A light and electron microscopic study | Q70389054 | ||
Retinal damage by light in rats | Q72826346 | ||
Up-regulation of Bax protein in degenerating retinal ganglion cells precedes apoptotic cell death after optic nerve lesion in the rat | Q73666347 | ||
P304 | page(s) | 334-344 | |
P577 | publication date | 2007-02-11 | |
P1433 | published in | Molecular Vision | Q6895981 |
P1476 | title | The influence of visible light exposure on cultured RGC-5 cells. | |
P478 | volume | 14 |
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Q34493796 | Light-induced retinal ganglion cell damage in vivo involves Dexras1. |
Q28575390 | Norrin attenuates protease-mediated death of transformed retinal ganglion cells |
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Q39794529 | The influence of sublethal blue light exposure on human RPE cells. |
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