Biochemical marker for diagnosing a leukodystrophy
View Patent ↗A biochemical marker for the diagnosis of a central nervous system leukodystrophic genetic disorder, e.g., Childhood Onset Ataxia and Central Nervous System Hypomyelination (CACH)/Vanishing White Matter Disease (VWM) has been discovered herein. Such a marker has been found in the cerebrospinal fluid (CSF) of such patients. A two dimensional gel electrophoresis/mass spectrometry or image analysis of stained transferrin isoforms approach revealed that patients with CACH/VWM have a pronounced deficiency of the basic asialo form of the transferrin compared to the amounts of asialotransferrin normally present in CSF from healthy controls or other CNS disorders. The acidic sialotransferrin isoform is not reduced in these disorders. The transferrin isoform abnormality described in the CSF of patients with CACH/VWM is unique and may be used as a clinical diagnostic biomarker. The rapid (48 hr) and efficient diagnosis of this disorder described herein will have great clinical utility.
1. A method for diagnosing a central nervous system leukodystrophy in patients, comprising the steps of separating asialo- and sialo-transferrin isoforms in a cerebrospinal fluid sample taken from said patient and control subjects who do not have a central nervous system leukodystrophy, identifying said transferrin isoforms, then separately quantifying the separated sialotransferrin and asialotransferrin isoforms, wherein a diminution of asialotransferrin concentration, but not that of sialotransferrin, relative to asialotransferrin concentration in said control subjects, is diagnostic for said leukodystrophy.
2. The method of claim 1 , wherein said leukodystrophy is Childhood Onset Ataxia and CNS Hypomyelination (CACH), also known as Vanishing White Matter Disease (VWM).
3. The method of claim 1 , wherein said transferrin isoform separation step is carried out by 2-dimensional gel chromatography.
4. The method of claim 3 , wherein said separated transferrin isoforms are quantified by staining said isoforms, followed by image analysis of the mass and density of each stained isoform.
5. The method of claim 1 , wherein said separated transferrin isoforms are quantified by mass spectrometric techniques.