Kent D. Chapman, Ph.D.
Affiliations: | 1993- | Biological Sciences | University of North Texas, Denton, TX, United States |
Area:
Plant Biochemistry, Lipid Metablism, Lipid Storage, Cell Biology, Mass SpectrometryGoogle:
"Kent Chapman"Mean distance: (not calculated yet)
Parents
Sign in to add mentorRichard N. Trelease | grad student | 1986-1991 | Arizona State (Physics Tree) |
Thomas S. Moore, | post-doc | 1991-1993 | Louisiana State University Baton Rouge |
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Publications
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Horn PJ, Chapman KD. (2023) Imaging Plant Metabolism in situ. Journal of Experimental Botany |
Scholz P, Chapman KD, Ischebeck T, et al. (2023) Quantification of Growth in . Bio-Protocol. 13: e4740 |
Scholz P, Chapman KD, Ischebeck T, et al. (2023) Analysis of Pectin-derived Monosaccharides from Using GC-MS. Bio-Protocol. 13: e4746 |
Favaloro EJ, Chapman K, Mohammed S, et al. (2023) Identification of ADAMTS13 Inhibitors in Acquired TTP. Methods in Molecular Biology (Clifton, N.J.). 2663: 505-521 |
Favaloro EJ, Chapman K, Mohammed S, et al. (2023) Automated and Rapid ADAMTS13 Testing Using Chemiluminescence: Utility for Identification or Exclusion of TTP and Beyond. Methods in Molecular Biology (Clifton, N.J.). 2663: 487-504 |
Arias-Gaguancela O, Herrell E, Aziz M, et al. (2023) Two legume fatty acid amide hydrolase isoforms with distinct preferences for microbial- and plant-derived acylamides. Scientific Reports. 13: 7486 |
Stephenson J, Chapman K, Mohammed S, et al. (2023) A multicenter evaluation of the Technoscreen ADAMTS13 activity semi-quantitative screening test for thrombotic thrombocytopenic purpura diagnosis and exclusion. International Journal of Laboratory Hematology |
Borisjuk L, Horn P, Chapman K, et al. (2023) Seeing plants as never before. The New Phytologist |
Arias-Gaguancela O, Aziz M, Chapman KD. (2022) Fatty acid amide hydrolase and 9-lipoxygenase modulate cotton seedling growth by ethanolamide oxylipin levels. Plant Physiology |
Romsdahl TB, Cocuron JC, Pearson MJ, et al. (2022) A lipidomics platform to analyze the fatty acid compositions of non-polar and polar lipid molecular species from plant tissues: Examples from developing seeds and seedlings of pennycress (). Frontiers in Plant Science. 13: 1038161 |