Objective To investigate the effect of photodynamic therapy (PDT) combined with intravitreal bevacizumab on wet age-related macular degeneration (AMD). Methods In this retrospective study, 34 eyes (28 cases) diagnosed with wet AMD received PDT combined intravitreal injection of bevacizumab, including 25 eyes with classic CNV and 9 eyes with minimally classic CNV by fluorescein angiography; On optical coherence tomography (OCT), 23 eyes showed intraretinal fluid (IRF) and 11 eyes presented subretinal fluid (SRF). After signing informed consent, all patients underwent initial standard PDT followed by intravitreal bevacizumab (1.25 mg) within succeeding 3 to 7 days. Best corrected visual acuity (BCVA) and OCT with routine eye examinations were evaluated monthly. Additional bevacizumab (1.25 mg) was injected intravitreally if new or increasing fluid appreciated on OCT, or BCVA lowered more than 5 letters even with stabilized fluid. Injection was discontinued if no fluid was showed on OCT (quot;dry macularquot;), or BCVA was stabilized even with fluid after two consecutive injections. BCVA and central retinal thickness (CRT) were analyzed and compared between baseline and 6 month follow-up. The correlation between parameters such as baseline BCVA, greatest linear dimension (GLD), type of CNV, SRF or IRF and posttreatment BCVA will be analyzed. The injection number of bevacizumab and complications were recorded. Results Compared to baseline, BCVA improved (9.4plusmn;10.2) letters and reach 44.9plusmn;21.3 letters (t=5.438,P<0.01) and CRT decreased (184.6plusmn;214.6) mu;m (t=4.810,P<0.01) at 6 month visit. The average of injection number was 1.9plusmn;0.9 (including initial injection of combination therapy). With multiple lineal regression analysis, only baseline BCVA correlated to posttreatment BCVA at 6 month visit (r=0.802.P<0.01). The type of CNV, GLD, SRF or IRF on OCT and CRT at baseline were not associated to post-treatment BCVA (r=0.053, -0.183, 0.139 and 0.053, respectively.P>0.05). BCVA of eyes with SRF (14.7 letters) increased more than eyes with IRF (6.9 letters) on OCT (t=-2.207,P=0.035). The change of BCVA after treatment (t=-0.076), change of CRT (t=-1.028) and number of injections (Z=-1.505) were not different between classic CNV and minimally classic CNV (P>0.05). The change of CRT (t=-0.020) and number of injections (Z=-0.237) did not present difference between SRF and IRF (P>0.05). The change of BCVA (t=1.159) and number of injections (Z=-1.194) were not correlated to whether residual fluid or not at 6 month visit (P>0.05). No severe complications were noticed during follow-up.Conclusion For wet AMD patients, PDT combined intravitreal bevacizumab could improve visual acuity, reduce retinal thickness and control CNV progress in a short-term.
Objective To compare the clinic therapeutic effect of intravitreal ranibizumab injection versus photodynamic therapy (PDT) combined with intravitreal ranibizumab injection for idiopathic choroidal neovascularizatio (ICNV), and to investigate the clinical effect and safety of treatment. Methods A randomized controlled clinical prospective study was performed for 27 patients (27 eyes) diagnosed as ICNV. Fourteen patients were assigned to receive PDT and intravitreal ranibizumab injection (combination roup.n=14); the control group was treated with only intravitreal ranibizumab injection (single group, n=13).The combination group was treated with an intravitreal injection of ranibizumab (0.5 mg/0.05 ml) 1 week after PDT. The bestcorrected visual acuity (BCVA) (logMAR), examination of the ocular fundus, fluorescence fundus angiography (FFA), indocyanine green angiography (ICGA) and optical coherence tomography (OCT) were performed respectively at 1, 2, 3, 6 and 12 months after treatment. If choroidal neovascularization (CNV) was only partially regressed or the leakage went on during follow-up, those patients were re-injected with ranibizumab. Results After 12 months, the average vision is 0.22plusmn;0.11 in single group, and 0.21plusmn;0.12 in combination group, and the differences were not significant (t=0.187, P=0.853). In single group FFA and ICGA showed completely closed CNV in 10 eyes (77.92%), and almost closed CNV in 3 eyes (23.08%) with obvious reduction of fluorescence leakage. In combination group FFA and ICGA showed completely closed CNV in 12 eyes (85.71%), and almost closed CNV in 2 eyes (14.29%) with obvious reduction of fluorescence leakage; OCT showed the subretinal fluid absorption and reduction of CNV. The average macular retinal thickness (MRT) in single groups is (167.96plusmn;10.69) m, and in combination groups is (171.64plusmn;11.30)m. In single and combination groups MRT decreased significantly at the final follow-up, but no significant differences in both groups (t=-0.887.P=0.389). The average number of intravitreal injection was (1.5plusmn;0.7) in combination group and (2.4plusmn;1.0) in single group (t=2.821,P=0.009). There were no ocular or systemic adverse events observed except for one patient with subconjunctival hemorrhage in the single group.Conclusions Intravitreal ranibizumab injection and PDT combined with intravitreal bevacizumab injection are both effective and safe for the patients with ICNV. The combined therapy can induce CNV regression, fundus hemorrhage and exudation absorption more effectively, and have less recurred CNV and side effects.
Objective To evaluate the clinical efficacy of intravitreal injections of antivascular endothelial growth factor monoclonal antibody ranibizumab in choroidal neovascularization (CNV) secondary to pathologic myopia (PM). Methods This is a prospective, uncontrolled, open-label study. 34 eyes of 34 patients with CNV secondary to PM were included in the study. All affected eye were treated with intravitreal ranibizumab 0.05 ml (10 mg/ml). Before the injection, bestcorrected visual acuity of early treatment of diabetic retinopathy study (ETDRS), noncontact tonometer, ophthalmoscope, fundus photography, fundus fluorescein angiograph (FFA) and optical coherence tomography (OCT) examination were necessary. The initial average letters of ETDRS acuity were 33.85plusmn;14.67, range from 0 to 69. The initial average central macular thickness (CMT) was(293.41plusmn;79.45) m, range from 210 m to 543 m. The patients were followed up for 3 to 12 months. Best-corrected visual acuity, OCT and ophthalmoscope examination were assessed monthly. If necessary, FFA was used. The letters of ETDRS acuity and CMT were compared before and after treatment. Results All eyes received an average of 1.68 injections, the final vision of follow-up increased (13.50plusmn;9.94) letters than before (t=7.92,P=0.00), CMT decreased (71.14plusmn;72.26) m (t=4.62,P=0.00). There were no systemic or ocular serious side effects during the follow up. Conclusion Intravitreal ranibizumab for pathologic myopia choroidal neovascularization showed visual acuity improvement, retinal thickness reduction and safety.
Objective To investigate the effects of celecoxib-poly lactide-co-glycolide microparticles (CEL-PLGA-MS) on rat retina after intravitreal injection. Methods A total of 32 male Brown Norway rats were randomly divided into CEL-PLGA-MS group and celecoxib group, 16 rats in each group. The rats in CEL-PLGA-MS group were divided into four dosage group, four rats in each group, which received intravitreal injection of PLGA with celecoxib at the concentration of 40, 80, 160, 320 mu;mol/L, respectively. The rats in celecoxib group were divided into four dosage group, four rats in each group, which received intravitreal injection of celecoxib at the concentration of 40, 80, 160, 320 mu;mol/L, respectively. Phosphate buffer solution (PBS) was injected in two rats as PBS control group. Two rats as normal control group received no treatment. The difference of retinal thickness among groups was measured by optical coherence tomography (OCT). The morphological and histological change of retina was evaluated under light microscope and transmission electron microscope. Results There was no difference of retinal thickness between normal control group and PBS control group (F=0.12,P>0.05). At the first week after injection, the retinal thickness of CEL-PLGA-MS group and celecoxib group were thicker than that in normal control group and PBS control group (F=9.62, 46.13;P<0.01). The retinal thickness of celecoxib group was thicker than that in CEL-PLGA-MS group (F=165.15,P<0.01). The retinal thickness was estimated equal among 40, 80, 320 mu;mol/L dosage groups in CEL-PLGA-MS group (F=4.79,P<0.01). The retinal thickness of 160, 320 mu;mol/L dosage group were thicker than that in 40, 80 mu;mol/L dosage group in celecoxib group (F=28.10,P<0.01). At the second week after injection, there was no difference of retinal thickness between CEL-PLGA-MS and celecoxib group (F=3.79,P>0.05); the retinal thickness of CEL-PLGA-MS and celecoxib group became thinner gradually compare to the first week after injection (F=7.28, 103.99; P<0.01). At the fourth week after injection, the retinal thickness of celecoxib group was thicker than that in CEL-PLGA-MS group (F=19.11,P<0.01). The retinal thickness of CEL-PLGA-MS group was approximately the same to normal control group and PBS control group (F=2.02,P>0.05). The retinal thickness of celecoxib group was thicker than that in normal control group and PBS control group. No considerable abnormality of the retina was seen by light microscope and the retinal thickness corresponded with the values measured by OCT at the first week after injection. The abnormal structures of the retina were seen in 160, 320 mu;mol/L dosage group of celecoxib group and inner changed evidently by the transmission electron microscope. Disordered arrangement of microfilaments, dilated microtubule and some mitochondria vacuolation were observed in 320mu;mol/L dosage group of celecoxib group. Others changed slightly. Conclusions CEL-PLGA-MS has less toxicity on the retina than free-celecoxib after intravitreal injection. The safety of intravitreal injection with CEL-PLGA-MS is better than celecoxib.
Objective To observe the inhibition effect of selective cyclooxygenase2 inhibitor(celecoxib)on the experimental choroidal neovascularization(CNV). Methods Thirty 8-10 weeks old healthy male Brown-Norway(BN)rats were randomly divided into the control, laser and celecoxib group,with 10 rats in each group. At the dosage of 50 mg/kg, celecoxib was gavaged twice per day. After 7 days, experimental CNV was induced by Krypon laser on laser group and celecoxib group. Fundus fluorescein angiography (FFA) was performed on days 3, 7,14,21,30 after laser photocoagulation.On days 21 after photocoagulation, 5 rats in each group were sacrificed and the relative thickness of CNV membranes, the expression of COX-2, vascular endothelial growth factor(VEGF) and matrix metalloproteinase-2(MMP-2) were studied by histopathologic or immunohistochemistry examination.Results On days 21 after photocoagulation, the incidence of CNV in the celecoxib group is significantly lower than that in the laser group (chi;2=7.1068,P=0.0077); the relative thickness of the CNV membranes in the celecoxib group is reduced 41.38% compared to the laser group, the difference is statistically significant (t=16.760 0,P=0.0000).COX-2,VEGF and MMP-2 expression in the CNV membrane of celecoxib group were significantly lower than in control group (t=5.710 0,5.840 0, 8.020 0; P=0.000 0); the COX-2, VEGF and MMP-2 expressions in choroid and retina of control group were weak. Conclusion Prophylactic celecoxib can reduce the expression of VEGF and MMP-2 by inhibiting COX-2, and prevent the CNV induced by laser photocoagulation.
Objective To observe the inhibitory effects and characteristics of intravitreal injection with bevacizumab on laser induced choroidal neovascularization (CNV).Methods Twelve male brown norway(BN)rats were divided into the bevacizumab group and control group with six rats in each group. One eye of rats were received a series of 8 diode laser esions around optic disc to induce CNV,then the rats in bevacizumab group and control group underwent intravitreal injection with 2 mu;l bevacizumab and ringer's lactate.On days 7,14,and 21,the morphology and leakage of CNV were observed by fundus fluorescein angiography (FFA) and indocyanine green angiography (ICGA).On day 21 after photocoagulation,the photocoagulated eyes were enucleated and processed for histopathologic examination, including hematoxylin and eosin (Hamp;E) staining and immunohistochemistry staining for vascular endothelial growth factor(VEGF).Results On day 7 after photocoagulation,ICGA showed that CNV developed in the bevacizumab group and the control group. FFA showed that leakage intensity in the bevacizumab group was significantly lower than that in the control group,but the bevacizumab group gradually increased over time. The mean thickness of CNV significantly decreased in the bevacizumab group.The CNV in the bevacizumab group were negative for VEGF according to the result of immmuohistochemistry staining.Conclusions Early intravitreal injection with 2 mu;l bevacizumab can reduce the thickness of CNV and inhibit the leakage of CNV. However, bevacizumab could neither block the formation of CNV, nor suppress the permeability permanently. Combined other therapies with bevacizumab may be more potential to treat CNV effectively.
The introduction of anti-vascular endothelial growth factor (VEGF) therapy represents a landmark in the management of wet age-related macular degeneration (AMD). However, as a new therapy, several problems such as durability of the therapeutic effects, medication side effects, and medication selection have emerged. We should make appoint of improving the therapeutic effect and safety by realizing the limitation of the therapy, monitoring the clinical potential adverse reactions of anti-VEGF agents, and recommending individualized treatment.
Anti-vascular dndothelial growth factor (VEGF) drugs have open up a new treatment channel for ocular neovascular diseases. A lots of clinical data has proved that anti-VEGF drugs are effective and safe. But we should also notice that long-term and excessive usage of anti-VEGF drugs brings some new problems and complications, and even affect the normal ocular physiological process of the angiogenesis and retinal blood flow. So, it is necessary to pay attention to the problems and potential risks of excessive usage of anti-VEGF therapies for ocular neovascular disease.
Objective To observe the efficacy and safety of intravitreal injection of Ranibizumab(Lucentis) on exudative age-related macular degeneration (AMD). Methods To analyze retrospectively the clinical data of 56 patients with exudative AMD, which was diagnosed by examination of ETDRS charts, color fundus photograph, fluorescein angiography(FFA) or indocyanine green angiography(ICGA) and optical coherence tomography(OCT), were underwent intravitreal injection Lucentis 0.5 mg. Before the treatment, the ETDRS charts letter of 56 eyes was 25.1; choroidal neovascularization(CNA) was leaky which examined by FFA and ICGA; the average thickness of retina was 303.45 mu;m. Ranibizumab injection therapeutic times were 2.8, the average therapeutic times were 3.1. Follow-up time was 6-12 months (mean 8.7 months). Visual acuity (ETDRS charts letter), retinal thickness, leakage of CNV and operative complications before and after the treatment were analyzed. Results At the end of the follow-up period, the mean letter of ETDRS charts was 38.5, increased 13.4 letters (P<0.01), the ETDRS charts improved 15 or more letters in 22 eyes (39.3%), decreased more than 15 letters in 2 eyes (3.6%); the foveal thickness on OCT images were 303.45 mu;m before treatment and 191.35 mu;m a fter treatment, decreased significantly (P<0.00); FFA and/ or ICGA showed CNV complete closure in 12 eyes (21.4%), partial closure in 33 eyes (58.9%), no change in 9 eyes (16.1%) and new CNV in 1 eye (1.8%); Slight complications after operation disappeared during one week. Conclusion Intravitreal injection of Ranibizumab for exudative AMD was well tolerated, with an improvement in VA, FFA or ICGA , and OCT. (Chin J Ocul Fundus Dis,2008,24:160-163)
Objective To evaluate the efficacy and safety of photodynamic therapy (PDT) combined with intravitreal injection of bevacizumab for choroidal neovas cularization (CNV) caused by age-related macular degeneration (AMD). Methods A total of 21 eyes of 21 patients with AMD, which was diagnosed by examination of visual acuity, intraocular pressure, ocular fundus, fundus color photography, fundus fluorescein angiography(FFA), indocyanine green angiography(ICGA)and optic coherence tomography(OCT), were underwent PDT combined with intravitreal injection of Bevacizumab. The patients, 15 males (15 eyes) and 6 females (6 eyes), aged from 56 to 78 years, with the average of 68.6 years. The best corrected visual acuity:counting fingers/10cm0.9, logMAR was 1.04 plusmn; 0.41.CNV located in below or side central fovea of macula. There was obvious leakage of fluorescein which examined by FFA and ICGA. The average of retinal thickness of macular foveal was (258.91 plusmn; 78.66)mu;m. The treatment method of PDT has to according to the way of PDT for TAP and Verteporfin PDT for VIP. Intravitreal infection with 1.5mg bevacizumab was performed after three days under surface anesthesia. Follow-up time was 1, 3, 6, 12 months after the treatment. Results At last visit, the best-corrected visual acuity:counting fingers/10 cm 1.5, logMAR was 1.04plusmn;0.41, and the differences are statistically significant compared with before. The BCVA improved four or more lines in 6 eyes (28.57%), improved two to four lines in 9 eyes (42.86%), stabilized (plusmn;1 line or no change) in 6 eyes (28.57%) and decreased in none. The average intraocular pressure was (15.20plusmn;2.41)mmHg after surgery, and the differences was not statistically significant compared with before(P>0.05). FFA and ICGA showed CNV complete closure in 13 eyes (61.90 %), partial closure in 8 eyes (38.10%). The average of retinal thickness of mac ular foveal was(127.38plusmn;20.14) mu;m (P<0.01). Conclusion Combining treatment with PDT and intravitreal injection of Bevacizumab is safe and effective for CNV which caused by AMD. It has significant improvement in BCVA, leakage of CNV and retinal edema. (Chin J Ocul Fundus Dis,2008,24:164-167)