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Manganese‐enhanced MRI optic nerve tracking: effect of intravitreal manganese dose on retinal toxicity
Authors:Lisha Luo  Hui Xu  Ying Li  Zhaodong Du  Xiaodong Sun  Zhizhong Ma  Yuntao Hu
Institution:1. Peking University Eye Center, Peking University Third Hospital, , Beijing, China;2. Department of Radiology, Peking University Third Hospital, , Beijing, China;3. Department of Ophthalmology, Affiliated First People's Hospital of Shanghai JiaoTong University, , Shanghai, China
Abstract:The aim of this study was to provide data on the dose dependence of manganese‐enhanced MRI (MEMRI) in the visual pathway of experimental rats and to study the toxicity of MnCl2 to the retina. Sprague–Dawley rats were intravitreally injected with 2 μL of 0, 10, 25, 50, 75, 100, 150 and 300 mm MnCl2, respectively. The contrast‐to‐noise ratio (CNR) of MEMRI for optic nerve enhancement was measured at different concentrations of MnCl2. Simultaneously, the toxicity of manganese was evaluated by counting retinal ganglion cells and by retinal histological examination using light microscopy and transmission electron microscopy. The CNR increased with increasing concentration of MnCl2 up to 75 mm . Retinal ganglion cell densities were reduced significantly when the concentration of MnCl2 in the intravitreal injection was equal to or greater than 75 mm . Increasing numbers of ribosomes in retinal ganglion cells were first detected at 25 mm of MnCl2. The retinal toxicity of MnCl2 at higher concentration also included mitochondrial pathology and cell disruption of retinal ganglion cells, as well as abnormalities of photoreceptor and retinal pigment epithelium cells. It can be concluded that intravitreal injection of MnCl2 induces retinal cell damage that appears to start from 25 mm . The concentration of MnCl2 should not exceed 25 mm through intravitreal injection for visual pathway MEMRI in the rat. Copyright © 2012 John Wiley & Sons, Ltd.
Keywords:manganese  manganese‐enhanced MRI  optic nerve  retina  toxicity  transmission electron microscopy (TEM)
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