High-resolution magic angle spinning proton NMR analysis of human prostate tissue with slow spinning rates

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Abstract

The development of high-resolution magic angle spinning (HR-MAS) NMR spectroscopy for intact tissue analysis and the correlations between the measured tissue metabolites and disease pathologies have inspired investigations of slow-spinning methodologies to maximize the protection of tissue pathology structures from HR-MAS centrifuging damage. Spinning sidebands produced by slow-rate spinning must be suppressed to prevent their complicating the spectral region of metabolites. Twenty-two human prostatectomy samples were analyzed on a 14.1T spectrometer, with HR-MAS spinning rates of 600 Hz, 700 Hz, and 3.0 kHz, a repetition time of 5 sec, and employing various rotor-synchronized suppression methods, including DANTE, WATER-GATE, TOSS, and PASS pulse sequences. Among them, DANTE, as the simplest scheme, has shown the most potential in suppression of tissue water signals and spinning sidebands, as well as in quantifying metabolic concentrations. © 2003 Wiley-Liss, Inc.

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Taylor, J. L., Wu, C. L., Cory, D., Gonzalez, R. G., Bielecki, A., & Cheng, L. L. (2003). High-resolution magic angle spinning proton NMR analysis of human prostate tissue with slow spinning rates. Magnetic Resonance in Medicine, 50(3), 627–632. https://doi.org/10.1002/mrm.10562

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