In Vivo Measurement of Glucose Utilization in Rats using a β-Microprobe: Direct Comparison with Autoradiography

Author:

Millet Philippe1,Sallanon Marcelle Moulin12,Petit Jean-Marie3,Charnay Yves4,Vallet Philippe4,Morel Christian5,Cespuglio Raymond6,Magistretti Pierre J.37,Ibáñez Vicente1

Affiliation:

1. Unité de Neuroimagerie, Hôpitaux Universitaires de Genève;, Switzerland

2. INSERM, IFR19, Institut Fédérative des Neurosciences de Lyon, Bron, France

3. Laboratoire de Neuroénergétique, Université de Genève, Switzerland

4. Unité de Morphologie, Service de Neuropsychiatrie, Hôpitaux Universitaires de Genève;, Switzerland

5. Institute for High Energy Physics, University of Lausanne, Switzerland

6. EA 3734, Université Claude Bernard Lyon, France

7. Département de Physiologie de Lausanne, Switzerland

Abstract

A new β-microprobe (βP) has been used to locally measure the time–concentration curve of a radiolabeled substance. The βP, analogous to positron emission tomography methodology, is useful for in vivo animal studies because it can acquire time–concentration curves with high temporal and spatial resolution. Using [18F]fluoro-2-deoxy-d-glucose and βP, we evaluated the reliability of the biologic parameters and we compared this method with the [14C]2-deoxy-d-glucose autoradiography. βP time–concentration curves in three regions of the brain were obtained from 24 rats. Four kinetic parameters (K1-k4) were estimated from 60-minute experimental periods using a three-compartment model. Best fits were obtained when the vascular fraction (Fv) was estimated simultaneously with the four kinetic parameters (K1-k4). The mean estimated Fv values were about 5.5% for the frontal cortex regions and 8.0% for the cerebellum. Correlation coefficients higher than 0.830 were observed between regional cerebral metabolic rates for glucose (rCMRglc) values obtained by βP and autoradiography. In addition, the βP-derived input function was similar to that obtained by manual sampling. Our findings show that reliable rCMRglc values can be obtained using βP.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Neurology (clinical),Neurology

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