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Comparison of Spectral Data of Metabolites Collected from Bruker and Varian 600 MHz Spectrometers

  • 발행 : 2009.06.20

초록

The spectral data were collected from the two 600 MHz spectrometers from the two major manufacturers, Broker and Varian. The samples were prepared to create standard curves for quantitative measurements of metabolite concentrations. Instead of employing one-dimensional $^1H$ experiments, the two-dimensional $^1H-^{13}C$ HSQC experiments were performed for better separation of resonances. For some resonances, the high salt condition hindered the linear correlation between the intensity and actual metabolite concentration. Excluding overlapped ones, most resonances showed good linearity. Although the Varian spectrometer showed better linearity, both spectrometers were able to generate acceptable standard curves. From this data, we could identify resonances that could be used to better quantify the concentrations of the particular metabolites. With these standard curves, the quantitative measurements of the metabolites from the real samples will be facilitated.

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참고문헌

  1. B. Daviss, The Scientist 19, 25-28 (2005).
  2. G. F. Pauli, B. U. Jaki, and D. C. Lankin, J. Nat. Prod. 68, 133-149 (2005). https://doi.org/10.1021/np0497301
  3. J. C. Lindon, J. K. Nicholson, E. Holmes, and J. R. Everett, Concepts Magn. Reson.12, 289-320 (2000). https://doi.org/10.1002/1099-0534(2000)12:5<289::AID-CMR3>3.0.CO;2-W
  4. J. C. Lindon, E. Holmes, and J. K. Nicholson, Prog. Nucl. Magn. Reson. Spectrosc. 39, 140(2001).
  5. E. Holmes, O. Cloarec, and J. K. Nicholson, Proteome Res. 5,1313-1320 (2006). https://doi.org/10.1021/pr050399w
  6. M. E. Dumas, E. C. Maibaum, C. Teague, H. Ueshima, B. Zhou, J. C. Lindon, J. K.Nicholson, J. Stamler, P. Elliott, Q. Chan, and E. Holmes, Anal. Chem. 78, 2199-2208(2006). https://doi.org/10.1021/ac0517085
  7. A. M. Weljie, J. Newton, P. Mercier, E. Carlson, and C. M. Slupsky, Anal. Chem. 78,4430-4442 (2006). https://doi.org/10.1021/ac060209g
  8. T. W. M. Fan, Prog. Nucl. Magn. Reson. Spectrosc. 28, 161-219 (1996). https://doi.org/10.1016/0079-6565(95)01017-3
  9. M. R. Viant, Biochem. Biophys. Res. Commun. 310, 943-948 (2003). https://doi.org/10.1016/j.bbrc.2003.09.092
  10. J. Kikuchi, K. Shinozaki, and T. Hirayama, Plant Cell Physiol. 45, 1099-1104 (2004). https://doi.org/10.1093/pcp/pch117
  11. T. W. M. Fan, A. N. Lane, M. Shenker, J. P. Bartley, D. Crowley, R. M. Higashi,Phytochemistry 57, 209-221 (2001). https://doi.org/10.1016/S0031-9422(01)00007-3
  12. I. A. Lewis, S. C. Schommer, B. Hodis, K. A. Robb, M. Tonelli, W. M. Westler, M. R. Sussman, and J. L. Markley, Anal. Chem. 79, 9385-9390 (2007). https://doi.org/10.1021/ac071583z
  13. F. Delaglio, S. Grzesiek, G. W. Vuister, G. Zhu, J. Pfeifer, and A. Bax, J. Biomol. NMR 6, 277-293 (1995).
  14. T. D. Goddard, and D. G. Kneller, SPARKY 3, University of California, San Francisco.
  15. Q. Cui, I. A. Lewis, A. D. Hegeman, M. E. Anderson, J. Li, C. F. Schulte, W. M.Westler, H. R. Eghbalnia, M. R. Sussman, and J. L. Markley, Nature Biotechnology 26,62 (2008). https://doi.org/10.1038/nbt0108-62
  16. J. H. Lee, T.-K. Lee, R.-S. Kang, H. J. Shin, and H.-S. Lee, J. Kor. Magn. Reson. Soc.11, 56 (2007)
  17. S. Y. Park, B. S. Hwang, K. H. Ji, and J.-R. Rho, J. Kor. Magn. Reson. Soc. 11, 122(2007)
  18. B. S. Hwang, S. Y. Park, M. G. Park, and J.-R. Rho, J. Kor. Magn. Reson. Soc. 12,33 (2007)

피인용 문헌

  1. Application of NMR Spectroscopy to Assessment of Radiation Dose and Time Lapse vol.36, pp.5, 2015, https://doi.org/10.1002/bkcs.10252