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Quantitative imaging of magnesium distribution at single-cellresolution in brain tumors and infiltrating tumor cells with secondary ion massspectrometry (SIMS)

机译:单细胞镁分布的定量成像次要离子团对脑肿瘤和浸润性肿瘤细胞的抑制光谱仪(SIMS)

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摘要

Glioblastoma multiforme (GBM) is one of the deadliest forms of human brain tumors. The infiltrative pattern of growth of these tumors includes the spread of individual and/or clusters of tumor cells at some distance from the main tumor mass in parts of the brain protected by an intact blood-brain-barrier. Pathophysiological studies of GBM could be greatly enhanced by analytical techniques capable of in situ single-cell resolution measurements of infiltrating tumor cells. Magnesium homeostasis is an area of active investigation in high grade gliomas. In the present study, we have used the F98 rat glioma as a model of human GBM and an elemental/isotopic imaging technique of secondary ion mass spectrometry (SIMS), a CAMECA IMS-3f ion microscope, for studying Mg distributions with single-cell resolution in freeze-dried brain tissue cryosections. Quantitative observations were made on tumor cells in the main tumor mass, contiguous brain tissue, and infiltrating tumor cells in adjacent normal brain. The brain tissue contained a significantly lower total Mg concentration of 4.70 ± 0.93 mmol/Kg wet weight (mean ± SD) in comparison to 11.64 ± 1.96 mmol/Kg wet weight in tumor cells of the main tumor mass and 10.72 ± 1.76 mmol/Kg wet weight ininfiltrating tumor cells (p<0.05). The nucleus of individual tumor cellscontained elevated levels of bound Mg. These observations demonstrate enhancedMg-influx and increased binding of Mg in tumor cells and provide strong supportfor further investigation of GBMs for altered Mg homeostasis and activation ofMg-transporting channels as possible therapeutic targets.
机译:胶质母细胞瘤(GBM)是人类脑肿瘤中最致命的形式之一。这些肿瘤的浸润模式包括在完整血脑屏障保护的部分大脑中,距主要肿瘤块一定距离处的单个和/或肿瘤细胞簇的扩散。 GBM的病理生理研究可以通过能够对浸润的肿瘤细胞进行原位单细胞分辨率测量的分析技术来大大增强。镁稳态是高级别神经胶质瘤的活跃研究领域。在本研究中,我们已使用F98大鼠神经胶质瘤作为人类GBM的模型,并使用CAMECA IMS-3f离子显微镜的二次离子质谱(SIMS)的元素/同位素成像技术研究单细胞的镁分布冻干的脑组织冰冻切片中的分辨率。定量观察了主要肿瘤块中的肿瘤细胞,邻近的脑组织以及邻近正常脑中浸润的肿瘤细胞。与主要肿瘤块的肿瘤细胞的11.64±1.96 mmol / Kg湿重相比,脑组织的总Mg浓度显着降低,为4.70±0.93 mmol / Kg湿重(均值±SD),而10.72±1.76 mmol / Kg湿重浸润的肿瘤细胞(p <0.05)。单个肿瘤细胞的细胞核含有较高水平的结合镁。这些观察表明,增强了镁流入肿瘤细胞并增加其与镁的结合并提供强大的支持用于进一步研究GBM改变Mg稳态和激活Mg镁传输通道可能是治疗目标。

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