Effect of intravitreal injection of anti VEGF drugs on BCVA and mfERG before and after treatment for MCNV and ICNV
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National High Technology Research and Development Program of China(No.2015AA020949); The 14th Young Teachers Foundation for Basic Research by Fok Ying Tung Education Foundation(No.141038)

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    Abstract:

    AIM: To study the effect of intravitreal injection of anti- vascular endothelial growth factor(VEGF)on best corrected visual acuity(BCVA)and multifocal-electroretinogram(mfERG)before and after treatment for choroidal neovascular disease.

    METHODS: A total of 264 patients(332 eyes)with macular neovascularization(MCNV)and idiopathic choroidal neovascular disease(ICNV)who underwent pathologic myopia from January 2015 to January 2017 were enrolled in this study. Intraocular pressure and BCVA, fundus using 90D front mirror and slit lamp detection, and the fundus photograph, OCT, ICGA and FFA angiography, mfERG detection were taken. One month after the drug, 1mo after the final treatment, we recorded BCVA, intraocular pressure and mfERG and so on.

    RESULTS: Ranibizumab was injected into the 254 eyes, and 78 eyes were injected with conbercept. There were 37 eyes injected once, 147 eyes were injected twice, 72 eyes were injected 3 times, 57 eyes were injected 4 times, 19 eyes 5 times. There were no significant differences on intraocular pressure between the two groups(P>0.05). The BCVA before treatment was significantly different compared with those 1mo after treatment and 1mo after the final treatment(P>0.05). The amplitude of Ring1, Ring2 and Ring4 increased after treatment, the difference was statistically significant.(P<0.05). The amplitude of Ring3 and Ring5 increased at 1mo after final treatment(P<0.05).

    CONCLUSION:Intravitreal injection of anti-VEGF drugs has a significant effect on BCVA and mf ERG in patients with choroidal neovascular disease and is safe.

    Reference
    1 Finzi A, Cellini M, Strobbe E, et al. ET-1 plasma levels, choroidal thickness and multifocal electroretinogram in retinitis pigmentosa. Life Sci 2014; 118(2):386-390
    2 Sisk RA, Leng T. Multimodal imaging and multifocal electroretinography demonstrate autosomal recessive Stargardt disease may present like occult macular dystrophy. Retina 2014; 34(8):1567-1575
    3 Browning DJ, Lee C. Relative sensitivity and specificity of 10-2 visual fields, multifocal electroretinography, and spectral domain optical coherence tomography in detecting hydroxychloroquine and chloroquine retinopathy. Clin Ophthalmol 2014; 8(1):1389-1399
    4 Tsang AC, Pirshahid SA, Virgili G, et al. Hydroxychloroquine and chloroquine retinopathy: a systematic review evaluating the multifocal electroretinogram as a screening test. Ophthalmology 2015; 122(6):1239-1251
    5 Luo X, Patel NB, Rajagopalan LP, et al. Relation between macular retinal ganglion cell/inner plexiform layer thickness and multifocal electroretinogram measures in experimental glaucoma. Invest Ophthalmol Vis Sci 2014; 55(7):4512-4524
    6 Yu JYSHG. Chlorogenic acid supplementation improves multifocal electroretinography in patients with retinitis pigmentosa. J Korean Med Sci 2014; 29(1):117-121
    7 Zhu Y. Prognostic value of multifocal electroretinography and optical coherence tomography in eyes undergoing panretinal photocoagulation for diabetic retinopathy. Invest Ophthalmol Vis Sci 2014; 55(10):6358-6364
    8 Tehrani NM, Riazi-Esfahani H, Jafarzadehpur E, et al. Multifocal electroretinogram in diabetic macular edema; correlation with visual acuity and optical coherence tomography. J Ophthalmic Vis Res 2015; 10(2):165-168
    9 Buzzonetti L, Petroni S, Catena G, et al. Optical coherence tomography and electrophysiological findings in torpedo maculopathy. Documenta Ophthalmologica 2014; 130(1):65-70
    10 Du HY, Qian ZM, Wang ZY, et al. Changes of multifocal electroretinogram and visual acuity before and after idiopathic macular hole surgery. Recent Advances in Ophthalmology 2014; 27(4):177-182
    11叶君, 程武波. 多焦视网膜电图对中心性浆液性脉络膜视网膜病变恢复期病情评估的作用. 保健医学研究与实践2015; 12(3):46-47
    12黄延, 张晓峰. 玻璃体腔注射抗VEGF药物治疗脉络膜新生血管疾病疗效分析. 临床眼科杂志2016; 24(2):134-137
    13巩鸿霞, 庞雅菊, 王兰惠. 非动脉炎性前部缺血性视神经病变多焦视网膜电图特征及其与视力和黄斑中心区视网膜厚度的关系. 中华眼底病杂志2015; 31(6):532-535
    14滕娟, 陈梅珠. 糖尿病视网膜病变早期的多焦视网膜电图研究进展. 按摩与康复医学2015; 21(2):6-8
    15傅征, 龚颂建. 眼底自发荧光联合频域OCT对Stargardt病病理改变的临床观察. 国际眼科杂志2014; 14(1):118-121
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Lei Sun, Yong Tao. ,/et al.Effect of intravitreal injection of anti VEGF drugs on BCVA and mfERG before and after treatment for MCNV and ICNV. Guoji Yanke Zazhi( Int Eye Sci) 2017;17(7):1245-1248

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Publication History
  • Received:February 28,2017
  • Revised:June 12,2017
  • Online: June 26,2017