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High Spatial Resolution Imaging Mass Spectrometry of Human Optic Nerve Lipids and Proteins

机译:人类视神经脂质和蛋白质的高空间分辨率成像质谱

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摘要

The human optic nerve carries signals from the retina to the visual cortex of the brain. Each optic nerve is comprised of approximately one million nerve fibers that are organized into bundles of 800–1200 fibers surrounded by connective tissue and supportive glial cells. Damage to the optic nerve contributes to a number of blinding diseases including: glaucoma, neuromyelitis optica, optic neuritis, and neurofibromatosis; however, the molecular mechanisms of optic nerve damage and death are incompletely understood. Herein we present high spatial resolution MALDI imaging mass spectrometry (IMS) analysis of lipids and proteins to define the molecular anatomy of the human optic nerve. The localization of a number of lipids was observed in discrete anatomical regions corresponding to myelinated and unmyelinated nerve regions as well as to supporting connective tissue, glial cells, and blood vessels. A protein fragment from vimentin, a known intermediate filament marker for astrocytes, was observed surrounding nerved fiber bundles in the lamina cribrosa region. S100B was also found in supporting glial cell regions in the prelaminar region, and the hemoglobin alpha subunit was observed in blood vessel areas. The molecular anatomy of the optic nerve defined by MALDI IMS provides a firm foundation to study biochemical changes in blinding human diseases.
机译:人类的视神经将信号从视网膜传递到大脑的视觉皮层。每条视神经由大约一百万条神经纤维组成,这些神经纤维被组织成800-1200束纤维束,被结缔组织和支持性胶质细胞包围。视神经损伤导致许多致盲疾病,包括:青光眼,视神经脊髓炎,视神经炎和神经纤维瘤病;然而,对视神经损伤和死亡的分子机制尚不完全了解。本文中,我们介绍了脂类和蛋白质的高空间分辨率MALDI成像质谱(IMS)分析,以定义人类视神经的分子解剖结构。在对应于有髓和无髓神经区域以及支持结缔组织,神经胶质细胞和血管的离散解剖区域中观察到许多脂质的定位。观察到波形蛋白的蛋白片段,波形蛋白是星形胶质细胞的已知中间丝标记,被包围在筛板区域的神经纤维束周围。还发现S100B位于支持层前区的神经胶质细胞区域,并且在血管区域观察到了血红蛋白α亚基。 MALDI IMS定义的视神经的分子解剖结构为研究致盲性人类疾病中的生化变化提供了坚实的基础。

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