Compartir
Título
Bone marrow transplantation improves motor activity in a mouse model of ataxia.
Autor(es)
Palabras clave
Bone marrow transplantation
Ataxia
Motor activity
Disease models
Mutant strains
Clasificación UNESCO
3213.14 Cirugía de Los Trasplantes
3205.07 Neurología
Fecha de publicación
2017
Editor
Wiley
Citación
Díaz, D., Piquer‐Gil, M., Recio, J. S., Martínez‐Losa, M. M., Alonso, J. R., Weruaga, E., y Álvarez‐Dolado, M. (2018). Bone marrow transplantation improves motor activity in a mouse model of ataxia. Journal of Tissue Engineering and Regenerative Medicine, 12(4), e1950-e1961. https://doi.org/10.1002/term.2626
Resumen
[EN] Ataxias are locomotor disorders that can have an origin both neural and muscular, although both impairments are related. Unfortunately, ataxia has no cure, and the current therapies are aimed at motor re-education or muscular reinforcement. Nevertheless, cell therapy is becoming a promising approach to deal with incurable neural diseases, including neuromuscular ataxias. Here, we have used a model of ataxia, the Purkinje Cell Degeneration (PCD) mutant mouse, to study the effect of healthy (wild-type) bone marrow transplantation on the restoration of defective mobility. Bone marrow transplants (from both mutant and healthy donors) were performed in wild-type and PCD mice. Then, a wide battery of behavioural tests was employed to determine possible motor amelioration in mutants. Finally, cerebellum, spinal cord, and muscle were analysed to study the integration of the transplant-derived cells and the origin of the behavioural changes. Our results demonstrated that the transplant of wild-type bone marrow restores the mobility of PCD mice, increasing their capabilities of movement (52-100% of recovery), exploration (20-71% of recovery), speed (35% of recovery), and motor coordination (25% of recovery). Surprisingly, our results showed that bone marrow transplant notably improves the skeletal muscle structure, which is severely damaged in the mutants, rather than ameliorating the central nervous system. Although a multimodal effect of the transplant is not discarded, muscular improvements appear to be the basis of this motor recovery. Furthermore, the results from our study indicate that bone marrow stem cell therapy can be a safe and effective alternative for dealing with movement disorders such as ataxias.
URI
DOI
10.1002/term.2626
Versión del editor
Aparece en las colecciones
Ficheros en el ítem
Nombre:
2018 Díaz et al..pdfEmbargado hasta: 2099-12-31
Tamaño:
944.5Kb
Formato:
Adobe PDF
Descripción:
Artículo principal













