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用滤波器对角化方法处理乳腺癌细胞的高分辨率魔角旋转光谱。

Processing of high resolution magic angle spinning spectra of breast cancer cells by the filter diagonalization method.

机构信息

Instituto de Química de São Carlos, Universidade de São Paulo, Av. Trabalhador São-carlense 400, São Carlos, SP, Brazil 13560-970.

出版信息

Analyst. 2012 Oct 7;137(19):4546-51. doi: 10.1039/c2an35451a.

Abstract

Proton nuclear magnetic resonance ((1)H NMR) spectroscopy for detection of biochemical changes in biological samples is a successful technique. However, the achieved NMR resolution is not sufficiently high when the analysis is performed with intact cells. To improve spectral resolution, high resolution magic angle spinning (HR-MAS) is used and the broad signals are separated by a T(2) filter based on the CPMG pulse sequence. Additionally, HR-MAS experiments with a T(2) filter are preceded by a water suppression procedure. The goal of this work is to demonstrate that the experimental procedures of water suppression and T(2) or diffusing filters are unnecessary steps when the filter diagonalization method (FDM) is used to process the time domain HR-MAS signals. Manipulation of the FDM results, represented as a tabular list of peak positions, widths, amplitudes and phases, allows the removal of water signals without the disturbing overlapping or nearby signals. Additionally, the FDM can also be used for phase correction and noise suppression, and to discriminate between sharp and broad lines. Results demonstrate the applicability of the FDM post-acquisition processing to obtain high quality HR-MAS spectra of heterogeneous biological materials.

摘要

质子核磁共振 ((1)H NMR) 光谱用于检测生物样本中的生化变化是一种成功的技术。然而,当对完整细胞进行分析时,所达到的 NMR 分辨率不够高。为了提高光谱分辨率,使用高分辨率魔角旋转 (HR-MAS),并通过基于 CPMG 脉冲序列的 T(2)滤波器分离宽信号。此外,在 HR-MAS 实验中使用 T(2)滤波器之前,需要进行水抑制程序。本工作的目的是证明当使用滤波对角化方法 (FDM) 处理时域 HR-MAS 信号时,水抑制和 T(2)或扩散滤波器的实验程序是不必要的步骤。FDM 的结果以峰位置、宽度、幅度和相位的表格列表形式进行操作,允许在不干扰重叠或附近信号的情况下去除水信号。此外,FDM 还可用于相位校正和噪声抑制,以及区分尖锐和宽线。结果表明,FDM 后处理在获得异质生物材料的高质量 HR-MAS 光谱方面具有适用性。

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