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Comprehensive Autopsy Program for Individuals with Multiple Sclerosis
Published on: July 19, 2019
Low levels of cobalamin, epidermal growth factor, and normal prions in multiple sclerosis spinal cord
G Scalabrino1, D Veber1, R De Giuseppe2
1Department of Biomedical Sciences, Laboratory of Neuropathology, University of Milan, 20133 Milan, Italy.
Abstract:
We have previously demonstrated that multiple sclerosis (MS) patients have abnormal cerebrospinal fluid (CSF) levels of the key myelin-related molecules cobalamin (Cbl), epidermal growth factor (EGF), and normal cellular prions (PrP(C)s), thus confirming that some CSF abnormalities may be co-responsible for remyelination failure. We determined the levels of these three molecules in post-mortem spinal cord (SC) samples taken from MS patients and control patients. The control SC samples, almost all of which came from non-neurological patients, did not show any microscopic lesions of any type. All of the samples were supplied by the U.K. MS Tissue Bank. The Cbl, EGF, and PrP(C) levels were determined using enzyme-linked immunosorbent assays. The SC total homocysteine level was determined using a competitive immunoenzymatic assay. CSF samples, taken from a further group of MS patients, were used for the assay of holo-transcobalamin (holo-TC) levels. The Cbl, EGF, and PrP(C) levels were significantly decreased in MS SCs in comparison with controls and, paradoxically, the decreased Cbl levels were associated with decreased SC levels of homocysteine, a biochemical marker of Cbl deficiency. The trends of EGF and PrP(C) levels paralleled those previously found in CSF, whereas that of Cbl was the opposite. There was no significant difference in CSF holo-TC levels between the MS patients and the controls. Given that we have previously demonstrated that Cbl positively regulates central nervous system EGF levels, it is conceivable that the low EGF levels in the MS SC may be causally related to a local decrease in Cbl levels. Only PrP(C) levels were invariably decreased in both the SC and CSF regardless of the clinical course of the disease. These findings suggest that the simultaneous lack of Cbl, EGF, and PrP(C)s may greatly hamper the remyelination process in MS patients, because they are key molecules of the machinery for remyelination.
Insights
Multiple sclerosis (MS) patients exhibit reduced levels of key myelin molecules, including cobalamin (Cbl) and epidermal growth factor (EGF), in their spinal cords. These deficiencies, alongside lower normal cellular prions (PrP(C)s), may impede the brain
Area of Science:
- Neuroscience
- Biochemistry
- Pathology
Background:
- Multiple sclerosis (MS) is characterized by demyelination and remyelination failure.
- Previous studies indicated abnormal cerebrospinal fluid (CSF) levels of cobalamin (Cbl), epidermal growth factor (EGF), and normal cellular prions (PrP(C)s) in MS patients.
- These CSF abnormalities are hypothesized to contribute to remyelination failure.
Purpose of the Study:
- To investigate the levels of Cbl, EGF, and PrP(C)s in post-mortem spinal cord (SC) samples from MS patients and controls.
- To correlate SC levels of these molecules with SC homocysteine levels and CSF holo-transcobalamin (holo-TC) levels.
- To understand the role of these molecules in MS pathogenesis and remyelination failure.
Main Methods:
- Enzyme-linked immunosorbent assays (ELISAs) were used to quantify Cbl, EGF, and PrP(C) levels in SC samples.
- Competitive immunoenzymatic assays measured SC total homocysteine levels.
- CSF holo-TC levels were assessed in a separate group of MS patients.
Main Results:
- Significantly decreased levels of Cbl, EGF, and PrP(C) were observed in MS SCs compared to controls.
- Decreased Cbl levels in MS SCs were paradoxically associated with decreased SC homocysteine levels.
- EGF and PrP(C) trends in SC mirrored CSF findings, while Cbl trends were opposite. PrP(C) was consistently decreased in both SC and CSF.
Conclusions:
- The simultaneous reduction of Cbl, EGF, and PrP(C)s in the MS spinal cord may significantly impair remyelination.
- Low Cbl levels could contribute to reduced EGF levels in the MS central nervous system.
- PrP(C) reduction in both SC and CSF suggests a consistent molecular alteration in MS, irrespective of disease course.

