Method of identifying epileptic brain regions
View Patent ↗This disclosure provides methods, reagents, and diagnostic and prognostic markers useful for non-invasive identification, diagnosis, and therapeutic intervention in individuals with epilepsy. More particularly, the disclosure uses specific metabolites measured by magnetic resonance spectroscopy in brain tissue to detect epileptic brain regions.
1. A method of treating an epileptic subject by surgically or otherwise removing or inactivating an epileptic portion of the subject's brain identified by
(a) measuring concentrations of at least three metabolites in brain tissue from the subject's brain using magnetic resonance spectroscopy wherein the metabolites are choline, glycerophosphorylcholine, myo-inositol, lactate, N-acetylaspartylglutamate, phosphorylcholine, phosphorylethanolamine, and/or creatine plus phosphocreatine; wherein measuring concentrations of the at least three metabolites in the brain tissue includes measuring concentrations of at least three metabolites in the brain tissue as a pre-determined control;
(b) comparing measured concentrations of the at least three metabolites in the brain tissue from the subject's brain with the pre-determined control, wherein the measured concentrations of the at least three metabolites compared to the pre-determined control is indicative of the epileptic regions of the subject's brain; wherein the pre-determined control is derived from measured concentrations of the at least three metabolites in non-epileptic brain tissue, wherein the non-epileptic brain tissue comprises non-epileptic tissue from subjects without epilepsy and a known non-epileptic portion of the subject's brain tissue; and wherein the measured concentrations of the at least three metabolites in the brain tissue from the subject's brain comprise a reduced concentration of choline, an increased concentration of creatine plus phosphocreatine, an increased concentration of glycerophosphorylcholine, a reduced concentration of myo-inositol, a reduced concentration of lactate, an increased concentration of N-acetylaspartylglutamate, a reduced concentration of phosphorylcholine, or a reduced concentration of phosphorylethanolamine in the epileptic brain region compared to the pre-determined control; and
(c) treating an epileptic subject by surgically or otherwise removing or inactivating an epileptic portion of the subject's brain identified as epileptic brain tissue in the subject's brain based on the compared measured concentrations of the at least three metabolites in the brain tissue from the subject's brain with the pre-determined control.
2. The method of claim 1 further comprising using measured levels of metabolites simultaneously as predictor variables in a metabolite-based generalized estimating equation logistic regression model to discriminate between epileptic and non-epileptic regions of the brain.
3. The method of claim 1 wherein the metabolites are choline, creatine plus phosphocreatine and lactate.
4. The method of claim 1 wherein the magnetic resonance spectroscopy is 1 H MRS.