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首页> 外文期刊>Journal of chemical neuroanatomy >Imaging the time-integrated cerebral metabolic activity with subcellular resolution through nanometer-scale detection of biosynthetic products deriving from C-13-glucose
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Imaging the time-integrated cerebral metabolic activity with subcellular resolution through nanometer-scale detection of biosynthetic products deriving from C-13-glucose

机译:通过纳米级检测C-13葡萄糖衍生的生物合成产物,以亚细胞分辨率成像时间整合的脑代谢活动。

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摘要

Glucose is the primary source of energy for the brain but also an important source of building blocks for proteins, lipids, and nucleic acids. Little is known about the use of glucose for biosynthesis in tissues at the cellular level. We demonstrate that local cerebral metabolic activity can be mapped in mouse brain tissue by quantitatively imaging the biosynthetic products deriving from [U-C-13]glucose metabolism using a combination of in situ electron microscopy and secondary ion mass-spectroscopy (NanoSIMS). Images of the C-13-label incorporated into cerebral ultrastructure with ca. 100 nm resolution allowed us to determine the timescale on which the metabolic products of glucose are incorporated into different cells, their sub-compartments and organelles. These were mapped in astrocytes and neurons in the different layers of the motor cortex. We see evidence for high metabolic activity in neurons via the nucleus C-13 enrichment. We observe that in all the major cell compartments, such as e.g. nucleus and Golgi apparatus, neurons incorporate substantially higher concentrations of C-13-label than astrocytes. (C) 2015 Elsevier B.V. All rights reserved.
机译:葡萄糖是大脑的主要能量来源,也是蛋白质,脂质和核酸的重要组成部分。关于葡萄糖在细胞水平上用于组织生物合成的用途知之甚少。我们证明通过使用原位电子显微镜和二次离子质谱法(NanoSIMS)结合对[U-C-13]葡萄糖代谢产生的生物合成产物进行定量成像,可以在小鼠脑组织中定位局部脑代谢活动。 C-13标记的图像并入大脑超微结构中。 100 nm分辨率使我们能够确定葡萄糖代谢产物掺入不同细胞,其子房和细胞器的时间范围。这些被映射在运动皮层的不同层中的星形胶质细胞和神经元中。我们看到通过核C-13富集在神经元中具有高代谢活性的证据。我们观察到在所有主要的细胞区室中,例如核和高尔基体中,与星形胶质细胞相比,神经元掺入的C-13标签浓度要高得多。 (C)2015 Elsevier B.V.保留所有权利。

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