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Real-time imaging of single nerve cell apoptosis in retinal neurodegeneration.


ABSTRACT: Apoptotic nerve cell death is implicated in the pathogenesis of several devastating neurodegenerative conditions, including glaucoma and Alzheimer's and Parkinson's diseases. We have devised a noninvasive real-time imaging technique using confocal laser-scanning ophthalmoscopy to visualize single nerve cell apoptosis in vivo, which allows longitudinal study of disease processes that has not previously been possible. Our method utilizes the unique optical properties of the eye, which allow direct microscopic observation of nerve cells in the retina. We have been able to image changes occurring in nerve cell apoptosis over hours, days, and months and show that effects depend on the magnitude of the initial apoptotic inducer in several models of neurodegenerative disease in rat and primate. This technology enables the direct observation of single nerve cell apoptosis in experimental neurodegeneration, providing the opportunity for detailed investigation of fundamental disease mechanisms and the evaluation of interventions with potential clinical applications, together with the possibility of taking this method through to patients.

SUBMITTER: Cordeiro MF 

PROVIDER: S-EPMC516570 | biostudies-literature | 2004 Sep

REPOSITORIES: biostudies-literature

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Real-time imaging of single nerve cell apoptosis in retinal neurodegeneration.

Cordeiro M Francesca MF   Guo Li L   Luong Vy V   Harding Glen G   Wang Wei W   Jones Helen E HE   Moss Stephen E SE   Sillito Adam M AM   Fitzke Frederick W FW  

Proceedings of the National Academy of Sciences of the United States of America 20040830 36


Apoptotic nerve cell death is implicated in the pathogenesis of several devastating neurodegenerative conditions, including glaucoma and Alzheimer's and Parkinson's diseases. We have devised a noninvasive real-time imaging technique using confocal laser-scanning ophthalmoscopy to visualize single nerve cell apoptosis in vivo, which allows longitudinal study of disease processes that has not previously been possible. Our method utilizes the unique optical properties of the eye, which allow direct  ...[more]

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