Skip to main content
Journal cover image

Adeno-associated virus-delivered artificial microRNA extends survival and delays paralysis in an amyotrophic lateral sclerosis mouse model.

Publication ,  Journal Article
Stoica, L; Todeasa, SH; Cabrera, GT; Salameh, JS; ElMallah, MK; Mueller, C; Brown, RH; Sena-Esteves, M
Published in: Ann Neurol
April 2016

OBJECTIVE: Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disease characterized by loss of motor neurons, resulting in progressive muscle weakness, paralysis, and death within 5 years of diagnosis. About 10% of cases are inherited, of which 20% are due to mutations in the superoxide dismutase 1 (SOD1) gene. Riluzole, the only US Food and Drug Administration-approved ALS drug, prolongs survival by only a few months. Experiments in transgenic ALS mouse models have shown decreasing levels of mutant SOD1 protein as a potential therapeutic approach. We sought to develop an efficient adeno-associated virus (AAV)-mediated RNAi gene therapy for ALS. METHODS: A single-stranded AAV9 vector encoding an artificial microRNA against human SOD1 was injected into the cerebral lateral ventricles of neonatal SOD1(G93A) mice, and impact on disease progression and survival was assessed. RESULTS: This therapy extended median survival by 50% and delayed hindlimb paralysis, with animals remaining ambulatory until the humane endpoint, which was due to rapid body weight loss. AAV9-treated SOD1(G93A) mice showed reduction of mutant human SOD1 mRNA levels in upper and lower motor neurons and significant improvements in multiple parameters including the numbers of spinal motor neurons, diameter of ventral root axons, and extent of neuroinflammation in the SOD1(G93A) spinal cord. Mice also showed previously unexplored changes in pulmonary function, with AAV9-treated SOD1(G93A) mice displaying a phenotype reminiscent of patient pathophysiology. INTERPRETATION: These studies clearly demonstrate that an AAV9-delivered SOD1-specific artificial microRNA is an effective and translatable therapeutic approach for ALS.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Ann Neurol

DOI

EISSN

1531-8249

Publication Date

April 2016

Volume

79

Issue

4

Start / End Page

687 / 700

Location

United States

Related Subject Headings

  • Superoxide Dismutase-1
  • Superoxide Dismutase
  • Neurology & Neurosurgery
  • MicroRNAs
  • Mice, Transgenic
  • Mice
  • Lateral Ventricles
  • Injections, Intraventricular
  • Genetic Vectors
  • Genetic Therapy
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Stoica, L., Todeasa, S. H., Cabrera, G. T., Salameh, J. S., ElMallah, M. K., Mueller, C., … Sena-Esteves, M. (2016). Adeno-associated virus-delivered artificial microRNA extends survival and delays paralysis in an amyotrophic lateral sclerosis mouse model. Ann Neurol, 79(4), 687–700. https://doi.org/10.1002/ana.24618
Stoica, Lorelei, Sophia H. Todeasa, Gabriela Toro Cabrera, Johnny S. Salameh, Mai K. ElMallah, Christian Mueller, Robert H. Brown, and Miguel Sena-Esteves. “Adeno-associated virus-delivered artificial microRNA extends survival and delays paralysis in an amyotrophic lateral sclerosis mouse model.Ann Neurol 79, no. 4 (April 2016): 687–700. https://doi.org/10.1002/ana.24618.
Stoica L, Todeasa SH, Cabrera GT, Salameh JS, ElMallah MK, Mueller C, et al. Adeno-associated virus-delivered artificial microRNA extends survival and delays paralysis in an amyotrophic lateral sclerosis mouse model. Ann Neurol. 2016 Apr;79(4):687–700.
Stoica, Lorelei, et al. “Adeno-associated virus-delivered artificial microRNA extends survival and delays paralysis in an amyotrophic lateral sclerosis mouse model.Ann Neurol, vol. 79, no. 4, Apr. 2016, pp. 687–700. Pubmed, doi:10.1002/ana.24618.
Stoica L, Todeasa SH, Cabrera GT, Salameh JS, ElMallah MK, Mueller C, Brown RH, Sena-Esteves M. Adeno-associated virus-delivered artificial microRNA extends survival and delays paralysis in an amyotrophic lateral sclerosis mouse model. Ann Neurol. 2016 Apr;79(4):687–700.
Journal cover image

Published In

Ann Neurol

DOI

EISSN

1531-8249

Publication Date

April 2016

Volume

79

Issue

4

Start / End Page

687 / 700

Location

United States

Related Subject Headings

  • Superoxide Dismutase-1
  • Superoxide Dismutase
  • Neurology & Neurosurgery
  • MicroRNAs
  • Mice, Transgenic
  • Mice
  • Lateral Ventricles
  • Injections, Intraventricular
  • Genetic Vectors
  • Genetic Therapy