The therapeutic effect of anti-vascular endothelial growth factor (VEGF) for neovascular age-related macular degeneration (nAMD) was determined by a number of factors. Comprehensive thorough analysis of clinical features, imaging results and treatment response can predict the potential efficacy and possible vision recovery for the patient, and also can optimize the treatment regime to make a personalized therapy plan. Precise medicine with data from genomics, proteomics and metabolomics study will provide more objective and accurate biology basis for individual precise treatment. The future research should focus on comprehensive assessment of factors affecting the efficacy of anti-VEGF therapy, to achieve individualized precise diagnosis and treatment, to improve the therapeutic outcome of nAMD.
Objective To study and compare the clinical efficacy between intravitreal conbercept injection and (or) macular grid pattern photocoagulation in treating macular edema secondary to non-ischemic branch retinal vein occlusion (BRVO). Methods Ninety eyes of 90 patients diagnosed as macular edema secondary to non-ischemic BRVO were enrolled in this study. Forty-eight patients (48 eyes) were male and 42 patients (42 eyes) were female. The average age was (51.25±12.24) years and the course was 5–17 days. All patients were given best corrected visual acuity (BCVA), intraocular pressure, slit lamp with preset lens, fluorescence fundus angiography (FFA) and optic coherent tomography (OCT) examination. The patients were divided into conbercept and laser group (group Ⅰ), laser group (group Ⅱ) and conbercept group (group Ⅲ), with 30 eyes in each group. The BCVA and central macular thickness (CMT) in the three groups at baseline were statistically no difference (F=0.072, 0.286;P=0.930, 0.752). Patients in group Ⅰ received intravitreal injection of 0.05 ml of 10.00 mg/ml conbercept solution (conbercept 0.5 mg), and macular grid pattern photocoagulation 3 days later. Group Ⅱ patients were given macular grid pattern photocoagulation. Times of injection between group Ⅰ and Ⅲ, laser energy between group Ⅰ and Ⅱ, changes of BCVA and CMT among 3 groups at 1 week, 1 month, 3 months and 6 months after treatment were compared. Results Patients in group Ⅰ and Ⅲ had received conbercept injections (1.20±0.41) and (2.23±1.04) times respectively, and 6 eyes (group Ⅰ) and 22 eyes (group Ⅲ) received 2-4 times re-injections. The difference of injection times between two groups was significant (P<0.001). Patients in group Ⅱ had received photocoagulation (1.43±0.63) times, 9 eyes had received twice photocoagulation and 2 eyes had received 3 times of photocoagulation. The average laser energy was (96.05±2.34) μV in group Ⅰ and (117.41±6.85) μV in group Ⅱ, the difference was statistical significant (P=0.003). BCVA improved in all three groups at last follow-up. However, the final visual acuity in group Ⅰ and group Ⅲ were better than in group Ⅱ (t=4.607, –4.603;P<0.001) and there is no statistical significant difference between group Ⅲ and group Ⅰ (t=–0.802,P=0.429). The mean CMT reduced in all three groups after treating for 1 week and 1 month, comparing that before treatment (t=–11.855, –10.620, –10.254;P<0.001). There was no statistical difference of CMT between group Ⅰand Ⅲ at each follow up (t=0.404, 1.723, –1.819, –1.755;P=0.689, 0.096, 0.079, 0.900). CMT reduction in group Ⅰ was more than that in group Ⅱ at 1 week and 1 month after treatments (t=–4.621, –3.230;P<0.001, 0.003). The CMT in group Ⅲ at 3 month after treatment had increased slightly comparing that at 1 month, but the difference was not statistically significant (t=1.995,P=0.056). All patients had no treatment-related complications, such as endophthalmitis, rubeosis iridis and retinal detachment. Conclusions Intravitreal conbercept injection combined with macular grid pattern photocoagulation is better than macular grid pattern photocoagulation alone in treating macular edema secondary to non-ischemic BRVO. Combined therapy also reduced injection times comparing to treatment using conbercept injection without laser photocoagulation.
ObjectiveTo analyze the concentrations of vascular endothelial growth factor (VEGF) and pigment epithelium-derived factor (PEDF) in aqueous humor of patients with proliferative diabetic retinopathy (PDR) before and after intravitreal injection of ranibizumab. MethodsTwenty-five eyes of 20 PDR patients were collected as the PDR group. Twenty-five eyes of 21 senile cataract patients were collected as the control group. There were no statistical significance in gender (χ2=0.223), age (Z=-1.555) and intraocular pressure (Z=-0.225) between the two groups (P > 0.05). Samples of aqueous humor (0.1 ml) were collected just before and 7 days after the injection of ranibizumab in PDR group. Samples of aqueous (0.1 ml) humor were collected just before cataract surgery in control group. The concentrations of VEGF and PEDF in the aqueous humor were measured by enzyme-linked immunosorbent assay. ResultsThe VEGF and PEDF concentration in the aqueous humor were reduced significantly after intravitreal injection of ranibizumab in PDR group (Z=-4.072, -4.319; P < 0.05). The concentrations of VEGF and PEDF in the aqueous humor before intravitreal injection of ranibizumab in PDR group were significantly higher than the control group (Z=-5.228, 4.706; P < 0.05). The VEGF concentration in the aqueous humor after intravitreal injection of ranibizumab in PDR group were similar to control group (Z=-1.557, P > 0.05). However, the concentration of PEDF in the aqueous humor after intravitreal injection of ranibizumab in PDR group still higher than control group (Z=-2.475, P < 0.05). The ratio of VEGF/PEDF before and after intravitreal injection of ranibizumab was statistically different (Z=-2.058, P < 0.05), but was the same between PDR group and control group (Z=-0.456, -0.844; P > 0.05). The aqueous humor concentrations of VEGF and PEDF were not significantly correlated with each other, neither in PDR group (r=-0.195, -0.174; P > 0.05) nor in control group (r=-0.286, P > 0.05). ConclusionsAqueous humor concentrations of VEGF and PEDF are significantly elevated in eyes with PDR. Intravitreal injection of ranibizumab significantly decreased the VEGF and PEDF in the aqueous humor after 7 days.
ObjectiveTo observe the clinical effect of microincision vitreoretinal surgery (VRS) assisted with intravitreal injection of ranibizumab (IVR) in severe proliferative diabetic retinopathy (PDR) treatment. MethodsThis is a prospective non-randomized controlled clinical study. A total of 60 patients (70 eyes) with severe PDR diagnosed were enrolled and divided into IVR group (31 patients, 35 eyes) and control group (29 patients, 35 eyes). IVR group patients received an intravitreal injection of 0.05 ml ranibizumab solution (10 mg/ml) first, and 3 or 4 days later they received 23G microincision VRS. Control group patients only received 23G microincision VRS. The follow-up time was 3 to 12 months with an average of (4.5±1.8) months. The logarithm of the minimal angle of resolution (logMAR) best corrected visual acuity (BCVA), intraocular pressure, the central retinal thickness (CRT) and retinal reattachment, and the incidence of postoperative complications were comparatively analyzed. ResultsThere was no topical and systemic adverse reactions associated with the drug after injection in IVR group. The incidence of post-operative vitreous hemorrhage (VH) in IVR group and control group was 8.6% and 28.6% at 1 week after surgery, 0.0% and 17.1% at 1 month after surgery, 0.0% and 8.6% at 3 month after surgery respectively. The differences were statistically significant for 1 week (χ2=4.63, P < 0.05) and 1 month (χ2=4.56, P < 0.05), but was not statistically significant for 3 months (χ2=0.24, P > 0.05). The mean post-operative logMAR BCVA of IVR group (0.81±0.40) and control group (1.05±0.42) have all improved than their pre-operative BCVA, the difference was statistically significant (t=12.78, 4.39; P < 0.05). The mean logMAR BCVA of IVR group is higher than BCVA of control group, the difference was statistically significant (t=-2.36, P < 0.05). The average post-operative CRT in IVR group was thinner than that of control group, the difference was statistically significant (t=-2.53, P < 0.05). The incidence of a transient high intraocular pressure in IVR group (14.3%) was lower than that in control group (34.3%), the difference was statistically significant (t=4.79, P < 0.05). The incidence of retinal reattachment (t=0.35), epiretinal membrane (χ2=0.97), neovascular glaucoma (χ2=0.51) was no difference between these two groups (P > 0.05). ConclusionThe minimally invasive VRS assisted by IVR treatment for severe PDR can effectively prevent postoperative VH, reduce CRT and improve visual acuity.
ObjectiveTo observe the efficacy of adjuvant intravitreal injection of anti-vascular endothelial growth factor (VEGF) therapy for advanced Coats disease. MethodsThis study is a retrospective case series study. Fourteen patients (14 eyes), presenting Coats Stages 3B and 4 (8 and 6 eyes, respectively) were enrolled. All the patients were treated with adjuvant intravitreal anti-VEGF therapy. The intravitreal anti-VEGF injections varied from 1 to 7, with a median injections of 2.14. In 14 eyes, combined therapy was subretinal fluid drainage in 4 eyes, photocoagulation in 2 eyes, vitrectomy in 8 eyes. The follow-up period was ranged from 4 to 36 months, with a median follow-up of 18.8 months. Visual acuity and retinal reattachment were observed in follow up. ResultsAt last follow up, global suvival was 100.0% with no enucleation performed in any patient because of disease progression. Except for 2 children who were unable to cope with the visual acuity test, visual acuity was improved in 2 patients, stable in 8 patients, and decreased in 2 patients. 5 patients (35.7%) achieved in complete retinal reattachment, 3 patients (21.4%) were succeed in partial retinal reattachment, and the remain 6 patients(42.8%) failed in retinal reattachment. Two patients developed cataract after vitrectomy, and no other adverse reaction was observed during follow-up. ConclusionAnti-VEGF therapy combined with classic treatments in advanced Coats disease can keep or impove the visual acuity in most patients by reducing of subretinal exudation.
Objective To observe the clinical efficacy of intravitreal Ranibizumab on exudative agerelated macular degeneration (AMD).Methods The clinical data of 46 patients(52 eyes)with exudative AMD were analyzed retrospectively. All patients were diagnosed by examination of early treatment of diabetic retinopathy study (ETDRS) charts, color fundus photograph,fluorescein angiography(FFA)or indocyanine green angiography(ICGA)and optical coherence tomography(OCT).They received intravitreal injection of 0.05 ml (10 mg/ml) Ranibizumab, once per month for 3 months. Further injection may be required if the monthly followup indicated. A total of 52 eyes received 214 times of injections, each eye received 2-6 injections (mean 4.12). The Followup duration was 12 months. Vision acuity, fovea thickness and CNV leakage before and after treatment were analyzed.Results At the 12th month after treatment, the mean letter of ETDRS charts was 37.80 (11.40 letters more that pretreatment index,Plt;0.01). FFA and (or) ICGA showed complete closures choroidal neovascularization (CNV) in 11 eyes(21.20%),partial closures in 34 eyes (65.40%),no change in four eyes (7.70%),lesion growth in two eyes(3.80%)and new lesion in one eye (1.90%).OCT indicated the average of fovea thickness was 187.50 mu;m (122.80 mu;m less than the pretreatment index, Plt;0.01).Conclusion Intravitreal injection of Ranibizumab for exudative AMD according to this therapeutic schedule was well tolerated,with an improvement in visual acuity,FFA or ICGA and OCT.
ObjectiveTo assess the clinical efficacy of vitrectomy with intravitreal ranibizumab (IVR) at different injection time for proliferative diabeticretinopathy (PDR). MethodsThis was a prospective, comparative, and randomized study. Ninety-seven eyes of 97 patients were enrolled and randomly assigned to three different treatment groups: 30 eyes (30 patients) in the preoperative IVR group, 32 eyes (32 patients) in the intraoperative IVR group and 35 eyes (35 patients) in the no IVR injection group. The best corrected visual acuity (BCVA) (F=0.18) and the grading of vitreous hemorrhage (χ2=1.39) before surgery did not differ significantly among the 3 groups, respectively (P > 0.05). All eyes enrolled underwent conventional 23-gauge pars plana vitrectomy (PPV). The preoperative IVR group received intravitreal 0.5 mg/0.05 ml ranibizumab injection 3 to 7 days before PPV, intraoperative IVR group received intravitreal 0.5 mg/0.05 ml ranibizumab injection at the end of PPV and non-drug injection group received PPV only. Postoperative BCVA, fundus color photography, optical coherence tomography examination was performed in all eyes at 1 week and 1, 3, 6, 9, 12 months after surgery. Early RVH was defined as RVH occurred within 1 week to 1 month postoperatively; while late RVH was defined as RVH occurred 1 month later after the operation. ResultsThe mean BCVA were all improved among the 3 groups compared with the preoperative vision at 1 month after operation. At the beginning of 3 months after surgery, the average BCVA of the preoperative injection group and the intraoperative injection group tended to stable; while 3 eyes in the non-drug injection group began to decreased. There was no significant difference in average BCVA at 1, 3 and 12 months of follow-up periods among the 3 groups (F=1.42, 1.17, 0.26; P > 0.05). The incidences of early RVH were 16.7%, 9.4%, 28.6% in the preoperative injection group, intraoperative injection group, and non-drug injection group, respectively (χ2=5.12, P < 0.05). The incidence of early RVH in the intraoperative injection group reduced compared to preoperative injection group and non-drug injection group (χ2=4.04, 4.93; P < 0.05). The incidences of late RVH were 13.3%, 9.4%, 14.3% in preoperative injection group, intraoperative injection group, and non-drug injection group, respectively (χ2=0.47, P > 0.05). The average centeral foveal thickness (CFT) decreased among the 3 groups in different degrees at 1 month when compared with that of 1 week after operation and the decreasing was statistically significant (F=59.50, P < 0.05). A subgroup pairwise analysis showed no significant difference of decreasing CFT in preoperative injection group compared with that of intraoperative injection group (t=0.23, P > 0.05). The average CFT of the 3 groups had different degrees of thickening at 3, 6, 9, 12 months after surgery, and the increasingof CFT among the 3 groups were not differ significantly (F=2.92, 2.86, 3.07, 3.12; P > 0.05). ConclusionsThe adjunctive use of IVR can reduce the incidence of early postoperative RVH in vitrectomy for PDR, decrease in macular thickness and obtain favorable visual recovery. The effect of preoperative IVR injection was slightly better than that of the intraoperative IVR injection.
ObjectiveTo systematically review the efficacy and safety of photodynamic therapy (PDT) and intravitreal vascular endothelial growth factor (VEGF) inhibitors in the treatment of polypoidal choroidal vasculopathy (PCV), and to investigate the primary treatment tentatively. MethodsA systematic search of Pubmed, Embase, the Cochrane Library and the Wanfang Data was performed to identify all comparative studies that compared the outcomes of PDT alone, intravitreal VEGF inhibitors alone and combined intravitreal VEGF inhibitors and photodynamic therapy. Outcomes of interest included the regression and recurrence rate of polypoidal lesions, best corrected visual acuity (BCVA), central retinal thickness (CRT), therapeutic times, and the occurrence rate of adverse events. 2 randomized controlled trials (RCT) and 19 non-RTCs were identified. According to treatment methods, the data extracted was classified to 3 groups, analyzed with odds ratio (OR), weighted mean difference (WMD) and 95%confidence interval (95%CI). ResultsMeta-analysis suggests that the regression rate of polypoidal lesions (OR=0.34, 0.07; 95%CI=0.13-0.88, 0.02-0.36) and BCVA (WMD=0.25, 0.11; 95%CI=0.14-0.36, 0.01-0.21) in combined therapy group were significantly better than those in PDT group and intravitreal VEGF inhibitors group (P < 0.05). The recurrence rate of polypoidal lesions in PDT group was significantly lower than intravitreal VEGF inhibitors group (OR=0.35, 95%CI=0.16-0.74, P=0.006). BCVA (P=0.025) and the occurrence rate of adverse events (OR=60.36, 95%CI=6.04-603.50, P=0.000 5) in intravitreal VEGF inhibitors group were significant better than PDT group. ConclusionsCombined treatment appeared to be superior to PDT alone or intravitreal VEGF inhibitors alone. Combined treatment takes priority over all others in the primary treatment of PCV.