Retinal neuronal cell death underlies many incurable eye diseases such as retinitis pigmentosa (RP) and glaucoma, and causes adult blindness. We have shown that maintenance of ATP levels via inhibiting ATP consumption is a promising strategy for preventing neuronal cell death. Here, we show that branched chain amino acids (BCAAs) are able to increase ATP production by enhancing glycolysis. In cell culture, supplementation of the culture media with BCAAs, but not glucose alone, enhanced cellular ATP levels, which was canceled by a glycolysis inhibitor. Administration of BCAAs to RP mouse models, rd10 and rd12, significantly attenuated photoreceptor cell death morphologically and functionally, even when administration was started at later sta...
International audienceMitochondrial dysfunction is responsible for hereditary optic neuropathies. We...
Ocular diseases associated with retinal ganglion cell (RGC) degeneration is the most common neurodeg...
In this study, we analyzed how distinct glycolysis inhibitors influenced the redox status of retinal...
Retinal neuronal cell death underlies many incurable eye diseases such as retinitis pigmentosa (RP) ...
Purpose: We have previously shown that maintenance of ATP levels is a promising strategy for prevent...
Glaucoma is a major cause of adult blindness due to gradual death of retinal ganglion cells. Current...
AbstractGlaucoma is a major cause of adult blindness due to gradual death of retinal ganglion cells....
In this study, we show that glutamate regulates the viability of cultured retinal cells upon transie...
AbstractIn this study, we show that glutamate regulates the viability of cultured retinal cells upon...
Glaucoma is a worldwide leading cause of irreversible vision loss characterized by progressive death...
Glaucoma is a worldwide leading cause of irreversible vision loss characterized by progressive death...
Background: Progressive retinal ganglion cell (RGC) dysfunction and death are common characteristics...
Glaucoma is a worldwide leading cause of irreversible vision loss characterized by progressive death...
AbstractGlaucoma is a major cause of adult blindness due to gradual death of retinal ganglion cells....
International audienceMitochondrial dysfunction is responsible for hereditary optic neuropathies. We...
International audienceMitochondrial dysfunction is responsible for hereditary optic neuropathies. We...
Ocular diseases associated with retinal ganglion cell (RGC) degeneration is the most common neurodeg...
In this study, we analyzed how distinct glycolysis inhibitors influenced the redox status of retinal...
Retinal neuronal cell death underlies many incurable eye diseases such as retinitis pigmentosa (RP) ...
Purpose: We have previously shown that maintenance of ATP levels is a promising strategy for prevent...
Glaucoma is a major cause of adult blindness due to gradual death of retinal ganglion cells. Current...
AbstractGlaucoma is a major cause of adult blindness due to gradual death of retinal ganglion cells....
In this study, we show that glutamate regulates the viability of cultured retinal cells upon transie...
AbstractIn this study, we show that glutamate regulates the viability of cultured retinal cells upon...
Glaucoma is a worldwide leading cause of irreversible vision loss characterized by progressive death...
Glaucoma is a worldwide leading cause of irreversible vision loss characterized by progressive death...
Background: Progressive retinal ganglion cell (RGC) dysfunction and death are common characteristics...
Glaucoma is a worldwide leading cause of irreversible vision loss characterized by progressive death...
AbstractGlaucoma is a major cause of adult blindness due to gradual death of retinal ganglion cells....
International audienceMitochondrial dysfunction is responsible for hereditary optic neuropathies. We...
International audienceMitochondrial dysfunction is responsible for hereditary optic neuropathies. We...
Ocular diseases associated with retinal ganglion cell (RGC) degeneration is the most common neurodeg...
In this study, we analyzed how distinct glycolysis inhibitors influenced the redox status of retinal...