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使用慢魔角旋转技术对器官和组织进行高分辨率氢核磁共振波谱分析。

High-resolution (1)H NMR spectroscopy in organs and tissues using slow magic angle spinning.

作者信息

Wind R A, Hu J Z, Rommereim D N

机构信息

Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

Magn Reson Med. 2001 Aug;46(2):213-8. doi: 10.1002/mrm.1181.

Abstract

It is shown that high-resolution (1)H NMR spectra of intact excised tissues and organs can be obtained by rotating the sample slowly about an axis at the magic angle of 54 degrees 44' with the external magnetic field. In this way tissue and cellular damage invoked by standard magic angle spinning (MAS) experiments, where spinning speeds of several kHz are typically employed, are minimized. Special RF pulse sequences, developed originally in solid state NMR, can be used to produce a spinning sideband-free isotropic spectrum. In this article the first results are shown of the brain, heart, liver, gluteus muscle, and kidney excised from mice using the 2D-phase-altered spinning sidebands (PASS) technique and employing MAS spinning speeds of 43-125 Hz. It was found that with slow sample spinning similar, and in some cases even better, spectral resolutions are obtained as compared with fast MAS.

摘要

结果表明,通过使样品围绕与外磁场呈54度44分魔角的轴缓慢旋转,可以获得完整切除组织和器官的高分辨率(1)H NMR谱。通过这种方式,标准魔角旋转(MAS)实验(通常采用几千赫兹的旋转速度)所引起的组织和细胞损伤被最小化。最初在固态NMR中开发的特殊射频脉冲序列可用于产生无旋转边带的各向同性谱。本文展示了使用二维相位改变旋转边带(PASS)技术并采用43 - 125 Hz的MAS旋转速度从小鼠身上切除的脑、心脏、肝脏、臀肌和肾脏的首批结果。结果发现,与快速MAS相比,样品缓慢旋转时可获得相似的光谱分辨率,在某些情况下甚至更好。

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