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Structural impairment patterns in peripapillary retinal fiber layer and retinal ganglion cell layer in mitochondrial optic neuropathies 被引量:7
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作者 Da Teng Chun-Xia Peng +6 位作者 Hai-Yan Qian Li Li Wei wang jun-qing wang Bing Chen Huan-Fen Zhou Shi-Hui Wei 《International Journal of Ophthalmology(English edition)》 SCIE CAS 2018年第10期1643-1648,共6页
AIM:To evaluate the structural injure patterns in peripapillary retinal fiber layer (pRNFL), retinal ganglion cell layer (RGCL) and their correlations to visual function in various mitochondrial optic neuropathi... AIM:To evaluate the structural injure patterns in peripapillary retinal fiber layer (pRNFL), retinal ganglion cell layer (RGCL) and their correlations to visual function in various mitochondrial optic neuropathies (MON) to offer help to their differential diagnosis.METHODS:Totally 32 MON patients (60 eyes) were recruited within 6mo after clinical onsets, including 20 Leber hereditary optic neuropathy (LHON) patients (37eyes), 12 ethambutol-induced optic neuropathy (EON)patients (23 eyes), and 41 age-gender matched healthy controls (HC, 82 eyes). All subjects had pRNFL and RGCL examinations with optic coherence tomography (OCT) and visual function tests.RESULTS:In the early stages of MON, the temporal pRNFL thickness decreased (66.09±22.57μm), but increased in other quadrants, compared to HC (76.95±14.81μm). The other quadrants remaining stable for LHON and EON patients besides the second hour sector of pRNFL thickness reduced and the temporal pRNFL decreased (56.78±15.87μm) for EON. Total macular thickness in MON reduced remarkably(279.25±18.90μm; P=0.015), which mainly occurring in the inner circle (3 mm diameter of circle) and the nasal temporal sectors in the outer circle (5.5 mm diameter of circle), in contrast to those in HC. RGCL thickness reduced in each sector of the macula (61.90±8.73μm; P≤0.001). It strongly showed the correlationship of best corrected visual acuity (R=0.50, P=0.0003) and visual field injury (R=0.54,P=0.0002) in MON patients.CONCLUSION:OCT is a potential tool for detecting structural alterations in the optic nerves of various MON. Different types of MON may have different damage patterns. 展开更多
关键词 mitochondrial optic neuropathies peripapillary retinal fiber layer retinal ganglion cell layer visual function Leber hereditary optic neuropathy ethambutol-induced optic neuropathy
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An immunochromatographic assay for rapid and simultaneous detection of levonorgestrel and methylprednisolone in water samples
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作者 Hua-Fang Chang jun-qing wang +1 位作者 Bin wang An-Ping Deng 《Chinese Chemical Letters》 SCIE CAS CSCD 2013年第10期937-940,共4页
Synthetic contraceptive levonorgestrel (LNG) and glucocorticoid methylprednisolone (MP) residues are eventually discarded to environmental water system and function as environmental hormones, displaying potential ... Synthetic contraceptive levonorgestrel (LNG) and glucocorticoid methylprednisolone (MP) residues are eventually discarded to environmental water system and function as environmental hormones, displaying potential risk to humans and ecosystems, thus there is an urgent need for fast, sensitive and simultaneous detection of these compounds in water samples. In this study, a competitive immunochromatographic assay (ICA) using colloidal gold-labeled polyclonal antibodies as probes for rapid and simultaneous detection of LNG and MP in water samples was developed. The visual detection limits of LNG and MP in water samples were 10 ng/mL. The detection process could be completed within 10 min. There was no cross-reactivity of the ICA with other seven compounds. The strips could be stored at 4 ℃ for 10 weeks without significant loss of activity. The assay is a suitable tool for rapid and semi- quantitative detection of LNG and MP in water samples on site. 展开更多
关键词 Immunochromatographic assay kevonorgestrel Methylprednisolone Colloidal gold
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