Quantification of brain glycogen concentration and turnover through localized 13C NMR of both the C1 and C6 resonances.


Autoria(s): van Heeswijk R.B.; Morgenthaler F.D.; Xin L.; Gruetter R.
Data(s)

01/04/2010

Resumo

We have recently shown that at isotopic steady state (13)C NMR can provide a direct measurement of glycogen concentration changes, but that the turnover of glycogen was not accessible with this protocol. The aim of the present study was to design, implement and apply a novel dual-tracer infusion protocol to simultaneously measure glycogen concentration and turnover. After reaching isotopic steady state for glycogen C1 using [1-(13)C] glucose administration, [1,6-(13)C(2)] glucose was infused such that isotopic steady state was maintained at the C1 position, but the C6 position reflected (13)C label incorporation. To overcome the large chemical shift displacement error between the C1 and C6 resonances of glycogen, we implemented 2D gradient based localization using the Fourier series window approach, in conjunction with time-domain analysis of the resulting FIDs using jMRUI. The glycogen concentration of 5.1 +/- 1.6 mM measured from the C1 position was in excellent agreement with concomitant biochemical determinations. Glycogen turnover measured from the rate of label incorporation into the C6 position of glycogen in the alpha-chloralose anesthetized rat was 0.7 micromol/g/h.

Identificador

http://serval.unil.ch/?id=serval:BIB_8DB444261E9B

isbn:1099-1492 (Electronic)

pmid:20186693

doi:10.1002/nbm.1460

isiid:000276443200007

Idioma(s)

en

Fonte

NMR in Biomedicine, vol. 23, no. 3, pp. 270-276

Palavras-Chave #Animals; Brain/metabolism; Carbon/metabolism; Carbon Isotopes; Computer Simulation; Fourier Analysis; Glucose/metabolism; Glycogen/metabolism; Magnetic Resonance Spectroscopy; Rats; Rats, Sprague-Dawley; Time Factors
Tipo

info:eu-repo/semantics/article

article