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评价用于纳升级组织活检代谢组学分析的高分辨率魔角旋转 NMR 波谱技术。

Evaluation of high resolution magic-angle coil spinning NMR spectroscopy for metabolic profiling of nanoliter tissue biopsies.

机构信息

CEA Saclay, DSM, IRAMIS, UMR CEA/CNRS no 3299-SIS2M, Laboratoire Structure et Dynamique par Résonance Magnétique, Gif-sur-Yvette, France.

出版信息

Anal Chem. 2012 Apr 17;84(8):3843-8. doi: 10.1021/ac300153k. Epub 2012 Apr 5.

Abstract

High-resolution magic-angle sample spinning (HR-MAS) (1)H NMR spectroscopy of tissue biopsies combined with chemometric techniques has emerged as a valuable methodology for disease diagnosis and environmental assessments. However, the tissue mass required for such experiments is of the order of 10 mg, and this can compromise the metabolic evaluation because of tissue heterogeneity. Tissue availability is often a limitation for clinical studies due to histopathological requirements, which are currently the gold standard for diagnosis, for example, in the case of tumors. Here, we introduce the use of a rotating micro-NMR detector that optimizes the coil filling factor such that mass-limited samples can be measured. We show the results for measuring nanoliter volume tissue biopsies using a commercial HR-MAS probe for the first time. The method has been tested with bovine muscle and human gastric mucosal tumor tissue samples. The gain in mass sensitivity is approximate up to 17-fold, and the adequate spectral resolution (3 Hz) allows the measurement of the metabolite profiles in nanoliter volume samples, thereby limiting the ambiguity resulting from heterogeneous tissues; thus, the approach presents diagnostic potential for studies by metabonomics of mass-limited biopsies.

摘要

高分辨率魔角样品旋转(HR-MAS)(1)H NMR 光谱学与化学计量学技术相结合,已成为疾病诊断和环境评估的一种有价值的方法。然而,此类实验所需的组织质量约为 10 毫克,由于组织异质性,这可能会影响代谢评估。由于目前诊断的金标准是组织病理学要求,例如在肿瘤的情况下,组织可用性通常是临床研究的限制因素。在这里,我们介绍了使用旋转微 NMR 探测器的方法,该探测器优化了线圈填充因子,从而可以测量质量有限的样品。我们首次展示了使用商业 HR-MAS 探头测量纳升体积组织活检的结果。该方法已经用牛肌肉和人胃黏膜肿瘤组织样本进行了测试。质量灵敏度的提高约为 17 倍,足够的光谱分辨率(3 Hz)允许测量纳升体积样品中的代谢物谱,从而限制了来自异质组织的歧义;因此,该方法为代谢组学对质量有限的活检的研究提供了诊断潜力。

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