The application of micro-coil NMR probe technology to metabolomics of urine and serum
暂无分享,去创建一个
[1] Ian J. Brown,et al. Human metabolic phenotype diversity and its association with diet and blood pressure , 2008, Nature.
[2] Frank C. Schroeder,et al. Extending the Scope of NMR Spectroscopy with Microcoil Probes , 2007 .
[3] Jeremiah Stamler,et al. Opening up the "Black Box": metabolic phenotyping and metabolome-wide association studies in epidemiology. , 2010, Journal of clinical epidemiology.
[4] Thomas Szyperski,et al. Standard operating procedure for metabonomics studies of blood serum and plasma samples using a 1H‐NMR micro‐flow probe , 2009, Magnetic resonance in chemistry : MRC.
[5] E Holmes,et al. 750 MHz 1H NMR spectroscopy characterisation of the complex metabolic pattern of urine from patients with inborn errors of metabolism: 2-hydroxyglutaric aciduria and maple syrup urine disease. , 1997, Journal of pharmaceutical and biomedical analysis.
[6] H. Keun,et al. Application of metabonomics in drug development. , 2007, Pharmacogenomics.
[7] Griffin Jl,et al. Metabonomics: its potential as a tool in toxicology for safety assessment and data integration. , 2004 .
[8] J. Griffin,et al. Metabonomics: its potential as a tool in toxicology for safety assessment and data integration. , 2004, Current drug metabolism.
[9] Götz Schlotterbeck,et al. Metabolic profiling technologies for biomarker discovery in biomedicine and drug development. , 2006, Pharmacogenomics.
[10] Ananyo Bhattacharya. Chemistry: Breaking the billion-hertz barrier , 2010, Nature.
[11] A. G. Wilson,et al. Microflow NMR: concepts and capabilities. , 2004, Analytical chemistry.
[12] T. Marshall,et al. Total protein determination in urine: elimination of a differential response between the coomassie blue and pyrogallol red protein dye-binding assays. , 2000, Clinical chemistry.
[13] Julian L Griffin,et al. Metabonomics: NMR spectroscopy and pattern recognition analysis of body fluids and tissues for characterisation of xenobiotic toxicity and disease diagnosis. , 2003, Current opinion in chemical biology.
[14] M. Spraul,et al. 750 MHz 1H and 1H-13C NMR spectroscopy of human blood plasma. , 1995, Analytical chemistry.
[15] T. Logan,et al. Application of a high‐resolution superconducting NMR probe in natural product structure determination† , 1999 .
[16] D. Raftery,et al. Metabolomics-based methods for early disease diagnostics , 2008, Expert review of molecular diagnostics.
[17] Ivan Rusyn,et al. Mouse population-guided resequencing reveals that variants in CD44 contribute to acetaminophen-induced liver injury in humans. , 2009, Genome research.
[18] Jimmy D Bell,et al. NMR‐invisible lactate in blood plasma , 1988, FEBS letters.
[19] D I Hoult,et al. The signal-to-noise ratio of the nuclear magnetic resonance experiment. 1976. , 1976, Journal of magnetic resonance.