Literature DB >> 7946996

1H NMR spectroscopic characterization of perchloric acid extracts from breast carcinomas and non-involved breast tissue.

I S Gribbestad1, S B Petersen, H E Fjøsne, S Kvinnsland, J Krane.   

Abstract

High-resolution 1H NMR spectra were obtained from perchloric acid extracts of breast tumor specimens and adjacent non-involved tissue. Two-dimensional shift-correlated and homonuclear J-resolved spectroscopy were used to identify coupled resonances in the spectra. Chemical shifts, multiplicities and spin-spin coupling constants of several non-resolved resonances in the one-dimensional spectra could be determined by the two-dimensional methods. Several differences in the metabolite content of the two types of extracts were established. The spectra of extracts from non-involved tissue were dominated by signals from glucose and other carbohydrates, while most of the tumors had very low or no detectable levels of glucose. High concentrations of lactate, taurine and succinate, an increase of the phosphocholine level, and a very low phosphocreatine level were characteristic findings in the 1H spectra of tumor extracts. The variation in the level of myo-inositol follows the variation in glucose for the two types of tissue. Scyllo-inositol was for the first time observed in the NMR spectra from breast tissue. Uridine 5'-diphospho-N-acetylglucosamine and uridine 5'-diphospho-N-acetylgalactosamine have been identified and there is an increased level of these two hexoses in the tumor tissue. These results provide insight into breast tumor metabolism, by simultaneously detecting a large number of metabolites and demonstrate the potential for using 1H NMR spectroscopy for studying different metabolic pathways in breast tumors. At the same time they provide useful information for interpretation of in vivo 1H NMR spectra of breast tumors.

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Year:  1994        PMID: 7946996     DOI: 10.1002/nbm.1940070405

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


  28 in total

1.  High-resolution magic-angle-spinning NMR spectroscopy for metabolic profiling of intact tissues.

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2.  Evaluating Acetate Metabolism for Imaging and Targeting in Multiple Myeloma.

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3.  Quantification of choline-containing compounds in malignant breast tumors by 1H MR spectroscopy using water as an internal reference at 1.5 T.

Authors:  Hyun-Man Baik; Min-Ying Su; Hon Yu; Rita Mehta; Orhan Nalcioglu
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4.  Magic angle spinning NMR-based metabolic profiling of head and neck squamous cell carcinoma tissues.

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Journal:  J Proteome Res       Date:  2011-10-18       Impact factor: 4.466

Review 5.  MRS and MRSI guidance in molecular medicine: targeting and monitoring of choline and glucose metabolism in cancer.

Authors:  Kristine Glunde; Lu Jiang; Siver A Moestue; Ingrid S Gribbestad
Journal:  NMR Biomed       Date:  2011-07       Impact factor: 4.044

6.  Ameliorative effects of pyrazinoic acid against oxidative and metabolic stress manifested in rats with dimethylhydrazine induced colonic carcinoma.

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Journal:  Cancer Biol Ther       Date:  2017-03-30       Impact factor: 4.742

Review 7.  Biochemical characterization of breast tumors by in vivo and in vitro magnetic resonance spectroscopy (MRS).

Authors:  Uma Sharma; Naranamangalam R Jagannathan
Journal:  Biophys Rev       Date:  2009-01-17

8.  Human in-vivo 31P MR spectroscopy of benign and malignant breast tumors.

Authors:  J M Park; J H Park
Journal:  Korean J Radiol       Date:  2001 Apr-Jun       Impact factor: 3.500

9.  Detection of choline signal in human breast lesions with chemical-shift imaging.

Authors:  Hyeon-Man Baek; Jeon-Hor Chen; Hon J Yu; Rita Mehta; Orhan Nalcioglu; Min-Ying Su
Journal:  J Magn Reson Imaging       Date:  2008-05       Impact factor: 4.813

10.  Characterization of breast cancers and therapy response by MRS and quantitative gene expression profiling in the choline pathway.

Authors:  David L Morse; Danielle Carroll; Sam Day; Heather Gray; Pooja Sadarangani; Shiva Murthi; Constantin Job; Brenda Baggett; Natarajan Raghunand; Robert J Gillies
Journal:  NMR Biomed       Date:  2009-01       Impact factor: 4.044

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