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首页> 外文期刊>Documenta Ophthalmologica: Advances in Ophthalmology >Retinal dystrophy associated with a single-base deletion mutation in mitochondrial DNA 3271 in patient with MELAS syndrome
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Retinal dystrophy associated with a single-base deletion mutation in mitochondrial DNA 3271 in patient with MELAS syndrome

机译:与MelAs综合征患者的线粒体DNA 3271中的单碱缺失突变相关的视网膜营养不良症

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PurposeMitochondrial encephalopathy with lactic acid and stroke-like episodes (MELAS) is caused by mutations in the mitochondrial DNA. Approximately 80% of MELAS patients have an A>G transition mutation at nucleotide pair 3243 in the mitochondrial DNA, m.3243A>G. There are also MELAS patients with a one-base deletion at nucleotide pair 3271 in the mitochondrial DNA, m.3271delT, but these cases are very rare. We report a case of MELAS with the m.3271delT and describe the retinal structure and electrophysiological alterations.MethodsThe retinal structure and function of a 37-year-old woman who was referred to our clinic for of nyctalopia were studied. Standard ophthalmological examinations including the medical history, measurements of the best-corrected visual acuity, intraocular pressures, and slit-lamp biomicroscopy, ophthalmoscopy, fluorescein angiography, fundus autofluorescence, spectral-domain optical coherence tomography (SD-OCT), full-field electroretinography (ERG), and multifocal electroretinography (mfERG) were performed.ResultsFundus examination showed bilateral hypopigmentary changes of the retinal pigment epithelium which extended from the posterior pole to the equator. Fluorescein angiography showed patchy hyperfluorescence due to window defects at the atrophic areas. Fundus autofluorescence demonstrated mild hyperfluorescent lesions in both eyes. SD-OCT showed that the interdigitation zone was indistinct in both eyes, and the inner nuclear layer was slightly thinner. The amplitudes of the rod, cone, and 30-Hz flicker ERGs were severely reduced, and the implicit times were prolonged. The a- and b-waves of the bright-flash mixed rod-cone ERGs were also reduced. The dark-adapted oscillatory potentials were reduced. The amplitudes of the mfERGs were severely depressed except at the fovea in both eyes.ConclusionsThese findings indicate that the RPE atrophy was wider and the rod dysfunction was more severe affected than that of previously reported MELAS cases with the m.3243A>G mutation.
机译:用乳酸和卒中相片发作(MelAs)的purposemitochondrial脑病是由线粒体DNA中的突变引起的。大约80%的Melas患者在线粒体DNA中的核苷酸对3243处具有A> G转换突变,M.3243A> G。在线粒体DNA的核苷酸对3271中还有Melas患者,在线粒体DNA,M.3271delt,但这些情况非常罕见。我们向M3271Delt报告了MELAS的情况,并描述了视网膜结构和电生理学改变。研究了一名第37岁女性的视网膜结构和功能,被提到了我们的临床核心诊断。标准眼科考试,包括病史,测量最佳矫正视力,眼内压力和缝隙灯生物镜,眼压镜,荧光素血管造影,眼底自发荧光,光谱域光学相干断层扫描(SD-OCT),全场电动图术(ERG)和多灶性电气识字造影(MFERG)进行。筛选尺寸检查显示了从后极到赤道延伸的视网膜颜料上皮的双侧低质化变化。荧光素血管造影由于紫外线区域缺陷而显示出斑块状的高荧光。眼底自发荧光在两只眼中展示了温和的脾浊度病变。 SD-OCT表明,两只眼睛中的互连区模糊不清,内部核层稍薄。严重降低了杆,锥形和30-Hz闪烁ERG的振幅,延长了隐式时间。也减少了亮闪光棒锥体ERG的A和B波。减少了深度适应的振荡电位。除了双眼中的FOVEA外,MFERGS的巨大幅度严重抑制。结论STHESE的结果表明,RPE萎缩较宽,并且杆功能障碍受到先前报告的MICH243A> G突变的麦拉斯病例的严重影响。

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