PROTON-DETECTED N-15 NMR-SPECTROSCOPY AND IMAGING

被引:12
作者
FREEMAN, D
SAILASUTA, N
SUKUMAR, S
HURD, RE
机构
[1] GF NMR Instruments, Fremont, CA 94539
来源
JOURNAL OF MAGNETIC RESONANCE SERIES B | 1993年 / 102卷 / 02期
关键词
D O I
10.1006/jmrb.1993.1081
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
Proton detection of nitrogen-15, using gradients for coherence selection, was determined to be an effective method for obtaining spectra of 15N-labeled metabolites from extracts and biopsies of tissue infused with [15N] ammonium chloride. The advantage of gradient selection of coherence was best demonstrated by the almost complete single-shot elimination of solvent water in extracts and tissue water in biopsies. As a single-acquisition editing method in which only protons attached to 15N are detected, the potential limitations of dynamic range and motion are also reduced. Gradient-enhanced heteronuclear multiple-quantum coherence (1H[15N] HMQC) was compared with conventional HMQC, and despite selection of only one of the two heteronuclear pathways, GE-HMQC was found to be more effective for resolving the desired signal for dilute solutions; and with a single scan. In addition, effective water elimination made it possible to use the resolution advantage of a frequency-encoding dimension in proton-detected 15N imaging experiments. The limit of detection of the method at 500 MHz was 0.7 mM in 16 scans from a total volume of 400 μl. Signals from tissue extracts were observable in less than one minute for kidney, heart, brain, and muscle. Proton-detected 15N GE-HMQC images with a voxel size of 39 × 78 × 625 μm were obtained at 600 MHz from a 4 mM (1.6 μmol) 15N urea sample in less than four hours. Distribution of [15N] urea in the kidney was observed in a 600 MHz GE-HMQC image of the papilla and some cortical structures. © 1993 Academic Press, Inc.
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页码:183 / 192
页数:10
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[41]   N-15 NMR-SPECTROSCOPY .1. POLYSARCOSINE AND RELATED SEQUENCE POLYPEPTIDES [J].
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HULL, WE ;
FORMACEK, V .
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[42]   FATE OF [N-15] GLYCINE IN PEAT AS DETERMINED BY C-13 AND N-15 CP-MAS NMR-SPECTROSCOPY [J].
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CHESHIRE, MV ;
WILLIAMS, BL ;
SPARLING, GP ;
RATCLIFFE, CI ;
RIPMEESTER, JA .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 1986, 34 (02) :170-176
[43]   N-15 NMR-SPECTROSCOPY - NATURAL-ABUNDANCE N-15 CHEMICAL-SHIFTS OF RING METHYLATED N,N-DIMETHYLANILINES [J].
SIBI, MP ;
LICHTER, RL .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1977, 173 (MAR20) :39-39
[44]   REVISION, BY PROTON, C-13, AND N-15 NMR-SPECTROSCOPY, OF THE STRUCTURE ASSIGNED A BIS(HEXOPYRANOSYL)-AMINE DERIVATIVE [J].
COXON, B ;
HOUGH, L .
CARBOHYDRATE RESEARCH, 1979, 73 (AUG) :47-57
[45]   C-13 AND N-15 NMR-SPECTROSCOPY OF N-15 LABELED VINYLOG OF N,N-DIMETHYLFORMAMIDES (MEROCYANINES) - INFLUENCE OF SOLVENT ON N-15 CHEMICAL-SHIFTS [J].
RADEGLIA, R ;
WOLFF, R ;
BORNOWSKI, B ;
DAHNE, S .
ZEITSCHRIFT FUR PHYSIKALISCHE CHEMIE-LEIPZIG, 1980, 261 (03) :502-511
[46]   FOURIER-TRANSFORM NMR-SPECTROSCOPY N-15 STUDIES OF AMINO-SUGARS [J].
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PURE AND APPLIED CHEMISTRY, 1977, 49 (08) :1151-1168
[47]   APPLICATION OF C-13 AND N-15 NMR-SPECTROSCOPY TO STRUCTURAL STUDIES ON NITRAMINES [J].
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AXENROD, T ;
AUTERA, JR .
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[48]   DIRECT DETERMINATION OF NITROGEN INVERSION IN HETEROCYCLIC ORTHO QUINONEDIAZIDES BY N-15 NMR-SPECTROSCOPY [J].
BOTTCHER, H ;
SALUVERE, TA ;
LIPPMAA, ET .
ZEITSCHRIFT FUR CHEMIE, 1972, 12 (10) :385-&
[49]   NATURAL-ABUNDANCE N-15 NMR-SPECTROSCOPY OF RAUWOLFIA ALKALOIDS AND MODEL COMPOUNDS [J].
FANSOFREE, SNY ;
LICHTER, RL ;
NELSON, RB ;
GRIBBLE, GW .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1977, 173 (MAR20) :40-40
[50]   CHARACTERIZATION OF UREA FORMALDEHYDE AND MELAMINE FORMALDEHYDE ADDUCTS AND RESINS BY N-15 NMR-SPECTROSCOPY [J].
EBDON, JR ;
HEATON, PE ;
HUCKERBY, TN ;
OROURKE, WTS ;
PARKIN, J .
POLYMER, 1984, 25 (06) :821-825