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使用魔角旋转对活体黑腹果蝇进行磁共振波谱分析。

Magnetic resonance spectroscopy of live Drosophila melanogaster using magic angle spinning.

作者信息

Righi Valeria, Apidianakis Yiorgos, Rahme Laurence G, Tzika A Aria

机构信息

NMR Surgical Laboratory, Department of Surgery, Massachusetts General Hospital, Harvard Medical School, MA, USA.

出版信息

J Vis Exp. 2010 Apr 15(38):1710. doi: 10.3791/1710.

Abstract

High-Resolution Magic Angle Spinning (HRMAS) proton magnetic resonance spectroscopy ((1)H-MRS) is a novel non-destructive technique that improves spectral line-widths and allows high-resolution spectra to be obtained from extracts, intact cells, cell cultures, and more importantly intact tissue to investigate relationships between metabolites and cellular processes. In vivo HRMAS (1)H-MRS studies have yet to be reported in the live fruit fly Drosophila melanogaster. Drosophila, as a simpler genetic organism, allows the multiple biological functions and various evolutionarily conserved signaling pathways to be examined at the whole organism level and it is a useful model for investigating genetics and physiology. To this end, we developed and implemented an in vivo HRMAS (1)H-MRS method to investigate live Drosophila at 14.1 T. Here, we outline an HRMAS (1)H-MRS protocol for the molecular characterization of Drosophila with a conventional MR spectrometer equipped with an HRMAS probe. This technique is a novel, in vivo, non-destructive Drosophila metabolite measurement approach, which enables the identification of disease biomarkers and thus may contribute to novel therapeutic development.

摘要

高分辨率魔角旋转(HRMAS)质子磁共振波谱((1)H-MRS)是一种新型的无损技术,它能改善谱线宽度,并允许从提取物、完整细胞、细胞培养物,更重要的是从完整组织中获得高分辨率光谱,以研究代谢物与细胞过程之间的关系。活体果蝇中的体内HRMAS(1)H-MRS研究尚未见报道。果蝇作为一种较简单的遗传生物体,能够在整个生物体水平上研究多种生物学功能和各种进化保守的信号通路,是研究遗传学和生理学的有用模型。为此,我们开发并实施了一种体内HRMAS(1)H-MRS方法,以在14.1 T磁场下研究活体果蝇。在此,我们概述了一种使用配备HRMAS探头的传统磁共振波谱仪对果蝇进行分子表征的HRMAS(1)H-MRS方案。该技术是一种新型的、体内的、无损的果蝇代谢物测量方法,能够识别疾病生物标志物,从而可能有助于新型治疗方法的开发。

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