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- W2382018889 abstract "Objective To observe the time of occurance,morphologic characteristics,and development of the retinal neurons' apoptosis of the early phase indiabetic rats. Design Experimental study. Participants Sprague-Dawley (SD) rats. Methods In 36 male SD rats of 8-week old,18 were diabetic models induced by streptozotocin injection,and 18 normal ones as control. Each group were subdivided into 3 groups (each group,n=6),in which the rats were sacrificed at 4,8 and 12 weeks,respectively. The pathological change of the retina,and the retinal neurons ultrastructure were observed. Apoptosis of the retinal neurons was also examined by TdT-mediated dUTP nick end label (TUNEL) assay. Main Outcome Measures The pathological retinal structure,the ultrastructure of retinal neurons,and the apoptosis of the retinal neurons in each group. Results No obvious structural changes of retina were found pathologically in diabetic rats of 4-week and 8-week,comparing with age-matched control group. However decreased retinal ganglion cell number and thinner inner nuclear layer were observed in diabetic rats of 12 weeks. Apoptosis defined by electron microscope,including cell shrinkage,reduced cell volume,chromatin margination and nuclear shrinkage and collapse,was found in each subgroup of diabetic rats. Apoptosis in the retinal ganglion cells layer and the inner nuclear layer was dominant. The apoptosis of the retinal neurons by TUNEL assay occurred at 4 weeks after onset of diabetes,and the number of the apoptosis neurons increased at 8 and 12 weeks in diabetic rats,the apoptosis neurons mainly located in the retinal ganglion cells layer and the inner nuclear layer. Conclusion Apoptosis of the retinal neurons occurred at 4 weeks after onset of diabetes and the degree of the apoptosis was correlated with the process of disease in rat model." @default.
- W2382018889 created "2016-06-24" @default.
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- W2382018889 date "2010-01-01" @default.
- W2382018889 modified "2023-09-24" @default.
- W2382018889 title "The apoptosis of retinal neurons and morphologic observation in early diabetic rats" @default.
- W2382018889 hasPublicationYear "2010" @default.
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