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31 p MAS-NMR of Human Erythrocytes: Independence of Cell Volume from angular Velocity

dc.contributor.authorKuchel, Philip William
dc.contributor.authorBubb, William A
dc.contributor.authorRamadan, S
dc.contributor.authorChapman, B E
dc.contributor.authorPhilp, D J
dc.contributor.authorCoen, M
dc.contributor.authorGready, Jill
dc.contributor.authorHarvey, Peta
dc.contributor.authorMcLean, Allan J
dc.contributor.authorHook, J
dc.date.accessioned2015-12-13T23:07:47Z
dc.date.issued2004
dc.date.updated2015-12-12T08:10:43Z
dc.description.abstract31P magic angle spinning NMR (MAS-NMR) spectra were obtained from suspensions of human red blood cells (RBCs) that contained the cell-volume-sensitive probe molecule, dimethyl methylphosphonate (DMMP). A mathematical representation of the spectral-peak shape, including the separation and width-at-half-height in the 31P NMR spectra, as a function of rotor speed, enabled us to explore the extent to which a change in cell volume would be reflected in the spectra if it occurred. We concluded that a fractional volume change in excess of 3% would have been detected by our experiments. Thus, the experiments indicated that the mean cell volume did not change by this amount even at the highest spinning rate of 7 kHz. The mean cell volume and intracellular 31P line-width were independent of the packing density of the cells and of the initial cell volume. The relationship of these conclusions to other non-NMR studies of pressure effects on cells is noted.
dc.identifier.issn0740-3194
dc.identifier.urihttp://hdl.handle.net/1885/86353
dc.publisherJohn Wiley & Sons Inc
dc.sourceMagnetic Resonance in Medicine
dc.subjectKeywords: methylphosphonic acid dimethyl ester; phosphonic acid derivative; phosphorus 31; unclassified drug; diagnostic agent; methylphosphonic acid dimethyl ester; organophosphorus compound; phosphorus; article; cell density; cell level; cell volume; erythrocyte; 31P MAS-NMR; Dimethyl methylphosphonate; Magic angle spinning; Red blood cells
dc.title31 p MAS-NMR of Human Erythrocytes: Independence of Cell Volume from angular Velocity
dc.typeJournal article
local.bibliographicCitation.lastpage668
local.bibliographicCitation.startpage663
local.contributor.affiliationKuchel, Philip William, University of Sydney
local.contributor.affiliationBubb, William A, University of Sydney
local.contributor.affiliationRamadan, S, University of Sydney
local.contributor.affiliationChapman, B E, University of Sydney
local.contributor.affiliationPhilp, D J, University of Sydney
local.contributor.affiliationCoen, M, University of Sydney
local.contributor.affiliationGready, Jill, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationHarvey, Peta, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationMcLean, Allan J, Canberra Hospital
local.contributor.affiliationHook, J, University of New South Wales
local.contributor.authoruidGready, Jill, u9508375
local.contributor.authoruidHarvey, Peta, u3288040
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.description.refereedYes
local.identifier.absfor060199 - Biochemistry and Cell Biology not elsewhere classified
local.identifier.absfor110199 - Medical Biochemistry and Metabolomics not elsewhere classified
local.identifier.ariespublicationMigratedxPub15207
local.identifier.citationvolume52
local.identifier.doi10.1002/mrm.20139
local.identifier.scopusID2-s2.0-16544375848
local.type.statusPublished Version

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