Objective To investigate the effects of lights with different wavelength on the retina of rd12 and C57BL/6J mice. Methods Thirty two rd12 mice and C57BL/6J mice were randomly divided into the control group, white light group, midwavelength light (505 nm) group and shortwavelength light (405 nm) group, with eight mice in each group. Besides the control group, other groups were exposed to cycle illuminations [12 hours dark, 12 hours (800plusmn;130) Lux] for seven days to establish the model of retinal light damage. Electroretinogram (ERG) responses of all mice were recorded at the day before illumination and 1st, 4th and 7th days after illumination. The eyes were enucleated at 7th days after illumination to assess levels of reactive oxygen species (ROS), expression of peroxiredoxin 6 (PRDX6), and activity of caspase-3. Results ERG amplitudes of all groups declined gradually in C57BL/6J mice, and the most significant effects was found in the short-wavelength light group. The amplitudes of photopic b-wave were significantly different at 1st, 4th and 7th days (F=4.412, 5.082, 9.980;P<0.01). The amplitudes of cone b-wave of the four groups decreased to (85plusmn;10) %, (70plusmn;19) %, (57plusmn;22) % and (46plusmn;19) % at 7th days, respectively, and were significantly different between white light group and short-wavelength light group(t=3.19,P<0.01). The levels of ROS were significantly different in rd12 mice (F=16.08,P<0.01), and elevated obviously in shortwavelength light group. The expressions of PRDX6 of retina were significantly different in rd12 mice (F=7.214,P<0.05), and were decreased obviously in short-wavelength light group. The caspase-3 relative activity was significantly different in rd12 retina (F=7.530,P<0.05); but there was no significant difference in C57BL/6J mice (F=3.625, 1.993, 1.133; P>0.05).The caspase-3 relative activity were significant different between rd12 mice and C57BL/6J mice in short wavelength light group (t=5.474,P<0.05). Conclusions Short-wavelength light can induce retinal damage of mouse retina, especially in rd12 mouse. The retinal light damage possibly relates to the oxidative damage.
Objective:To observe the protective effect of ginkgo bilo ba extrac t (EGb 761), a free radical scavenger, on the photoreceptor cells after lighti nduced retinal damage. Methods:Seventytwo female SpragueDa wley (SD) rats we re randomly divided into 4 groups: normal control group, lightinduced retinal da m age model group, model+physiological saline group, and model+EGb 761 group, with 18 rats in each group. All of the rats except the ones in the control group were exposed to white light at (2740plusmn;120) lx for 6 hours after the dark adap tation for 24 hours to set up the lightinduced retinal damage model. Rats in m o del + physiological saline group and model+EGb 761 group were intraperitoneall y injected daily with physiological saline and 0.35% EGb 761 (100 mg/kg), respec tively 7 days before and 14 days after the light exposure. Apoptosis of photorec eptor cells was detected 4 days after light exposure; 7 and 14 days after light exposure, histopathological examination was performed and the layer number of ou ter nuclear layers (ONL) on the superior and inferior retina was counted. Results:Four days after light exposure, the apoptosis of photorecep tor cells was fou nd on ONL in model, model+ physiological saline and model+EGb 761 group, and w as obviously less in model + EGb 761 group than in model and model+physiologic al saline group. Seven days after light exposure, the layers of ONL on the super ior retina were 3 to 4 in model and model+physiological saline group, and 7 to 8 in model+EGb 761 group; the mean of the layer number of ONL in model+EGb 761 group (6.92plusmn;0.82) was less than that in normal control group (8.40plusmn;0.95) (t=-1.416, P<0.05), but significantly more than that in model (5.96 plusmn;1.36 ) and model+physiological saline group (5.90plusmn;1.40)(t=1.024, 1.084; P<0.05). Fourteen days after light exposure, the layers of ONL on the superior retina were 0 to 1 in model and model+physiological saline group, and 3 to 4 i n model+EGb 761 group. The mean of the layer number of ONL in model+EGb 761 group (5.5 2plusmn;1.06) was significantly more than that in model (3.44plusmn;2.15) and model + physiological saline group (3.37plusmn;1.91) (t=2.082, 2.146, P<0.05). Conclusion:EGb 761 can partially inhibit the apoptosis of pho toreceptor cells, thus exert protective effect on photoreceptor cells.
Objective To observe the effects of the bone marrow mesenchymal stem cells (BMSCs) on the expression of neurotrophic factor protein gene in the retinal detachment (RD) rabbits. Methods 60 healthy rabbits were randomly divided into control group (group A), retinal detachment with PBS group (group B), retinal detachment with BMSCs group (group C), 20 rabbits in each group. RD model were established for rabbits in group B and C. 10 μl PBS was injected into the subretinal space of rabbits in group B, while 10 μl CM-Dil labeled BMSC PBS was injected into subretinal space of rabbits in group C. The rabbits in the group A received no treatment. At 1, 2 and 4 weeks after modeling, the mRNA expression of basic fibroblast growth factor (bFGF), brain derived neurotrophic factor (BDNF) and ciliary neurotrophic factor (CNTF) were measured by real-time quantitative PCR. Results At 1, 2 and 4 weeks after modeling, the mRNA expression of bFGF, BDNF, CNTF on retinal tissue were increased significantly in group C as compared with group A and B (P < 0.01). At 1 week after modeling, the mRNA expression of bFGF and CNTF on retinal tissue were increased significantly in group B as compared with group A, the mRNA expression of BDNF on retinal tissue in group B was similar with group C. At 2 and 4 weeks after modeling, the mRNA expression of bFGF, BDNF, CNTF were decreased in group B as compared with group A. Conclusion Subretinal transplantation of BMSC can increase the mRNA expression of bFGF, BDNF and CNTF on retinal tissue in RD rabbits.
Objective To observe the effect of high glucose on the expression of activating transcription factor 4 (ATF4) in cultured retinal Muuml;ller glia cells. Methods The retinal tissue of Sprague-Dawley (SD) rats was collected, and Muuml;ller cells were isolated and cultured. The glial fibrillary acidic protein (GFAP) and glutamine synthetase (GS) of Muuml;ller cells were identified by streptavidin-biotin-peroxidase complex. Cultured rat Muuml;ller cells were divided into control group (5.5 mmol/L glucose), group A (20 mmol/L glucose), group B (30 mmol/L glucose) and group C (40 mmol/L glucose). ATF4 protein expressions in Muuml;ller cells of four groups were measured by Western blot four days after cultured. Results GFAP and GS expressed in more than 95% of Muuml;ller cells. Over 95% of Muuml;ller cells of group A, B and C were positive for GFAP and GS. Western blots indicated that ATF4 protein in group A, B and C increased obviously compared with the control group (q=0.293, 0.754,0.484;P<0.05). Conclusion High glucose can increase the expression of ATF4 protein and cause endoplasmic reticulum stress in retinal Muuml;ller glia cells in vitro.
ObjectiveTo observe the effects on the function and structure of retina in diabetic rats by intravitreal transplantation of retinal nerve stem cells (NSC) differentiated from human umbilical cord mesenchymal stem cells (hUCMSCs). MethodsFifty clean male Sprague-Dawley rats were randomly divided into normal control with 9 rats (group A) and diabetes mellitus (DM) group with 31 rats. The DM models were induced by intraperitoneal injection of streptozocin. The rats of DM group were randomly divided into four groups after 10 weeks: rats with DM only (group B), diabetic rats with saline intravitreal injection (group C), diabetic rats with NSC intravitreal injection (group D), and 9 rats for each. The rats in the group A and B received no treatment. The retinal function was examined by the flash-electroretinogram on 2, 4, 6 weeks after intervention, the latency and amplitude of a-wave, b-wave of Rod, a-wave, b-wave of Max reactions (Max-R) and the total amplitudes of OPs were recorded. The morphological changes of retina were observed by hematoxylin-eosin staining. ResultsOn 2 and 4 weeks after the intervention, the differences of latency and amplitude of b-wave of Rod, a-wave, b-wave of Max-R and the total amplitudes of OPs among group A-D were significant (P<0.05). Compared group D with group B, C, the amplitude of b-wave of Rod, Max-R and the total amplitudes of OPs were increased (P<0.05); latency of b-wave of Max-R was decreased (P<0.05). On 6 weeks after the intervention, the amplitude of b-wave of Rod and the amplitude of a-wave, b-wave of Max-R and the total amplitudes of OPs in group D were increased compared with group B and C (P<0.05), the latency of b-wave of Rod and Max-R in group D were decreased compared with group C (P<0.05). On 10 weeks after molding, each retinal layers were disordered in diabetes mellitus group. On 2 weeks after the intervention, the number of cells in the retinal layers in group B and C were reduced compared with group A, and the structure was more disorder. On 4 weeks after the intervention, the structure of each retina layer in group D arranged less disordered, and the number of retinal ganglion cells was more than group B and C. It was also found that the retinal vascular endothelial expanded and retinal blood vessels cells proliferated. ConclusionThe function of retina in diabetes mellitus rats is improved by intravitreal injection of retinal NSCs differentiated from hUCMSCs.
Objective To investigate the protective effects of ginkgo biloba extract (EGb) 761 on retinal ganglion cells (RGC) in rats,and to establish a method to define the rat RGC using fluorogold as a fluorescence dye. Methods RGC of 12-20 day-old SpragueDawley rats were labeled by injecting fluorogold into superior colliculus. The eyeball enucleation was performed 6 days later. Retinal stretched preparation was obtained from one eye to observe the label result under fluorescence microscope, and the retina from the other eye was detached to make the cell suspension to observe the configuration of stained RGC under the contrast fluorescence microscope. The cell suspension was divided into the control group and Egb761 groups with the concentration of 0.03%,0.10%, 0.30%, 1.00%, and 3.00%. Trypan blue dye was used to evaluate cells viability and the survival rate of the large retinal ganglion cells was calculated. Results The sign of the RGC was clear after labeled by fluorogold. The characteristics of large RGC were obvious. After detachment, large RGC died quickly in the cell suspension and the fluorescence disappeared. The result of Trypan blue staining indicated that large RGC died rapidly in the cell suspension. Large RGC in EGb761 group showed significantly better survival rates than that in control group at different time sites (Plt;0.01) in a dose-dependent manner (Plt;0.01). Conclusions EGb761 has a significant protective effect on large RGC cultivated in vitro, and retrolable method to identify RGC is feasible.
ObjectiveTo observe the effects of Rhodiola on the rat retinal tissue morphology and the hypoxia-inducible factor (HIF)-1α at simulated hypoxia at different altitudes. Methods Forty-eight adult female Sprague Dawley rats were randomly divided into the Rhodiola Intervention group (intervention group) and the control group, each group had 24 rats. The intervention group rats were treated with intraperitoneal injection of 10 ml/kg of large plants Rhodiola solution, and the control group rats were injected with same volume of saline. One hour after the injection, six rats were randomly selected from both of the two groups and reared in the plateau environment simulation laboratory modules with the oxygen partial pressure of 17.4, 14.6, 11.3 and 7.4 kPa, which simulated the altitudes of 1500, 3000, 5000 and 8000 meters indoor respectively. Six hours later the rat eyeballs were harvested for paraffin sections and analyzed by hematoxylin and eosin staining, and immunohistochemical staining to observe the expression of HIF-1α and p53. ResultsIn the control group, the rat retinal layers were edema and loose, the retinal thickness increased, the retinal structure was disorganized, the ganglion cells were swollen and degenerated, and some can observe the karyopyknosis, karyolysis and the reduced cells number. As the altitude increased, the pathological changes of retinal became more obvious. In the intervention group, the characteristics of rat retinal morphology were same with the control group, while the degree of morphology changes was lighter than the control group. HIF-1α and p53 expressed mainly in the ganglion cell layer and inner nuclear layer of rat retina in the control group. As altitude increased, the expression of HIF-1α and p53 were increased too, which was positive correlated (r=0.9846, P < 0.05). Compared with the control group, the rat retinal expression of HIF-1α increased, while expression of p53 decreased in the intervention group, and the differences were statistically significant (P < 0.05). ConclusionRhodiola can reduce the retinal tissue pathology damage caused by high altitude hypoxia, and its mechanism may be related to the increasing expression of HIF-1α and reducing expression of p53.
Objective:To observe the effects of testosterone on optic nerve an d retinal ganglion cells (RGC) in experimental autoimmune encephalomyelitis (EAE ). Methods:Fourty one female Wistar rats were randomly divide d into 3 groups: the normal group (10 rats), the untreated control group (15 rats) and the testos terone group (16 rats). The rats in the first two groups were fed with 1% ethano l every day, and the rats in the testosterone group were fed with methyltestoste rone (0.25 mg/kg) every day. On the 20th day, EAE model was induced in the untre ated control group and the testosterone group by injecting guinea pig spinal cor d homogenate in complete Freund's adjuvant and bordetella pertussis vaccine. RGC were labeled with flurogold (FG) by injecting it in superior colliculus and lat eral geniculate body 7 days before establishing EAE model. All rats were fed wit h drugs continuously, and after 1430 days, rats in normal group and rats in un t reated control and testosterone groups who had symptoms within 48~72 hours were observed by light microscopy and flash visual evoked potential (FVEP) to detect the functional and morphological changes of optic nerve. The number of RGC was counted by fluorescence microscopy,and apoptosis of RGC was observed by termina l deoxynucleotidyl transferasemediated biotinylated UTP nick end labeling (TUN E L) Results:EAE rats presented weakness or paralysis of tail a nd hind limbs 10 days after establishing EAE model. Compared with the rats in the untreated contr ol group, the rats in the testosterone group had longer disease delitescence and lower clinical score (P=0.042). Extensive demyelination of optic nerves wi th the circuitous configuration was found in the untreated control group; while mild demyelination of optic nerves with regular figure was found in the testosterone group. In the testosterone group, the latency of N1、P and N2 wave was shorter w hile the amplitude ofN1-P and P-N2was higher than that in the untreated cont rol group (Plt;0.05). The number of RGC was (2284plusmn;132), (934plusmn;78, and (1725 plusmn;95)cells/mm2 in the normal, untreated control and testosterone groups, respectively; w hich was higher in testosterone group than that in untreated control group (P=0.028). The number of TUNEL positive cells was (4.02plusmn;0.16), (24.44plusmn;2.22), and (9.84plusmn;2.36) cells per high power field (times;400) in the 3 grou ps, respectively; wh ich was less in testosterone group than that in untreated control group (P=0.025). Conclusions:Testosterone may reduce the incidence and clinical score of EAE, inhibit the apoptosis of RGC, alleviate the demyelinatio n of optic nerves, and improved the conduction function of optic nerves.
Objective:To observe the changes of the thickness of reti nal nerve fiber layer (RNFL) of optic disc in rats with chronic glaucoma continuously dete cted by optic coherence tomography (OCT). Methods:A total of 48 Wist ar rats (24 males and 24 females) were randomly divided into 3 groups with 16 ra ts (32 eyes) in each group. The right eyes were the photocoagulation eyes and the left ones were as the control. Laser photocoagulation with the wavelength of 532 nm was perfo rmed on the trabecular network of the right eyes to induce the chronic middlelevel oc u lar hypertension. The changes of the intraocular pressure (IOP) were observed. O pticdisc linear scanning of OCT was performed 3, 6, and 9 weeks after IOP incr e ased, and the thickness of RNFL of optic disc was detected by the computer. Eight rats in each group were killed and retinal histology slic es were used to detect the thickness of RNFL. The flatmount s of retina from the right eyes of the other 8 rats in each group were stai ned by 1% toluidine blue. The density of retinal ganglion cells (RGC) was calcul ated and the results were compared and analyzed. Results:IOP o f the rats increas ed chronically and moderately after photocoagulation. IOP of the experimental ey e 3,6, and 9 weeks after photocoagulation was obviously higher than which of the control eyes, respectively (P<0.001). The results of OCT showed that the thickness of the RNFL of the experimental eyes was (67.39plusmn;5.91) mu;m, (53.4 2plusmn;5.64) mu;m,and (44.35plusmn;5.76) mu;m 3, 6, and 9 weeks after photocoagulation, and the corresponding thickness in the control eyes was(80.32plusmn;5.87), (79.69plusmn;5.69), and (80.78plusmn;5.84)mu;m, respectively. The thickness of the retinal fiber layer detecte d by histological method was (64.38plusmn;6.54), (51.47plusmn;6.4), and (42.10 plusmn;6.10)mu;m in the experimental eyes 3, 6, and 9 weeks after photocoagulation, and (76.23plusmn;6.78), (78.64plusmn;6.15), and (77.64plusmn;6.63) mu;m in the control eyes. Regression analysis of the thickness detected by the two methods was made, and the regression coefficients was 0.932(P<0.001).The differ ence of the ave rage density of RGC between the two groups was significant (P<0.05). Conclusi on:Glaucoma model in Wistar rats may successfully set up b y photocoagulating the trabecular meshwork. The thickness of retinal nerve fiber layer of the optic disc in rats with chronic glaucoma detected by OCT and obser ved by the light m icroscope is accordant. The changes of the thickness of RNFL in rats with chroni c glaucoma could be continuously detected by OCT to investigate the progress of the glaucomatic retinopathy in rat model.
ObjectiveTo observe the influence of human umbilical cord mesenchymal stem cells (hUCMSC) transplantation into vitreous cavity of diabetic rats on the retinal morphology, and the expression of glial fibrillary acidic protein (GFAP) and rhodopsin (RHO). Methods78 male Sprague-Dawley rats were used. 70 rats were injected with streptozotocin by tail vein injection at a dose of 40 mg/kg to establish the diabetes mellitus model, and another 8 rats were injected with 0.1 mol/L pH 4.0 citric acid buffer at the same dose as the normal control group. After 6 weeks of modeling, 10 rats were taken as the control group of diabetic model. hUCMSC suspension was injected into the right eye vitreous cavity of the remaining 60 rats, and the same volume of Dulbecco's modified Eagle/F12 medium was injected into the left vitreous cavity as control eyes. 1, 2 and 4 weeks after transplantation, follow-up experiments were performed. The experimental eyes were labeled as U1, U2, and U4 groups, while the control eyes were recorded as D1, D2, D4, and each group consisted of 20 eyes. After paraffin section and hematoxylin-eosin staining, the structure of the retina was observed by optical microscopy and the thickness of the outer nuclear layer and the inner nuclear layer (INL) were measured. The distribution and migration of hUCMSC in rat retina were observed by frozen section-tissue immunofluorescence assay. The mRNA and protein expression of GFAP and RHO in the retina were detected by real-time quantitative polymerase chain reaction (PCR) and Western blot assays. ResultsThe results of optical microscope observation showed the normal structure of retina in normal control group. The retinal nerve fiber layer (NFL) was thinned and the number of retinal ganglion cells (RGC) in the control group of diabetic rats was decreased. The decreased number and disorder arrangement of RGC were observed as well in U1, D1 rats. The RGC number of U2, U4, D2, D4 rats was gradually decreased. Compared with D4 group, the thickness of INL in U4 group was significantly increased (P < 0.05). Tissue immunofluorescence assay showed that hUCMSC were distributed along the inner limiting membrane in the retina of the U1 group, while the number of hUCMSC in the U2 group was gradually decreased, mainly in the NFL and ganglion cell layers. Real-time PCR and Western blot data indicated that the relative expression of GFAP mRNA and protein in the diabetic retina was significantly increased, and the relative expression of RHO mRNA and protein decreased gradually in the diabetic model group and the D1, D2, D4 groups. Compared with D2 and D4 groups, the mRNA and protein expression of GFAP in U2 and U4 groups were decreased, and the relative expression of RHO mRNA and protein were all increased (P < 0.01). ConclusionhUCMSC could migrate and integrate into the retina, after the transplantation into the vitreous cavity of diabetic rats, which reduced the expression of GFAP, but enhanced the expression of RHO.