Myelin repair: the role of stem and precursor cells in multiple sclerosis

Author:

Chandran Siddharthan12,Hunt David12,Joannides Alexis12,Zhao Chao13,Compston Alastair12,Franklin Robin J.M13

Affiliation:

1. Cambridge Centre for Brain Repair, University of CambridgeRobinson Way, Cambridge CB2 2PY, UK

2. Department of Clinical Neurosciences, University of CambridgeRobinson Way, Cambridge CB2 2PY, UK

3. Department of Veterinary Medicine, University of CambridgeMadingley Road, Cambridge CB3 0ES, UK

Abstract

Multiple sclerosis is the most common potential cause of neurological disability in young adults. The disease has two distinct clinical phases, each reflecting a dominant role for separate pathological processes: inflammation drives activity during the relapsing–remitting stage and axon degeneration represents the principal substrate of progressive disability. Recent advances in disease-modifying treatments target only the inflammatory process. They are ineffective in the progressive stage, leaving the science of disease progression unsolved. Here, the requirement is for strategies that promote remyelination and prevent axonal loss. Pathological and experimental studies suggest that these processes are tightly linked, and that remyelination or myelin repair will both restore structure and protect axons. This review considers the basic and clinical biology of remyelination and the potential contribution of stem and precursor cells to enhance and supplement spontaneous remyelination.

Publisher

The Royal Society

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology

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