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Systemic Delivery of MicroRNA Using Recombinant Adeno-associated Virus Serotype 9 to Treat Neuromuscular Diseases in Rodents
Published on: August 10, 2018
AAV9-mediated targeting of natural antisense transcript as a novel treatment for Dravet syndrome
Juan Antinao Diaz1, Ellie M Chilcott1, Amanda Almacellas Barbanoj2
1EGA Institute for Women's Health, University College London, London WC1E 6HX, UK.
Insights
Gene therapy using adeno-associated virus serotype 9 (AAV9) vectors carrying AntagoNATs shows promise for Dravet syndrome (DS). This novel approach improved survival and reduced seizures in DS mice, offering potential for a one-time treatment.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Dravet syndrome (DS) is a severe childhood epileptic encephalopathy characterized by prolonged seizures, developmental delay, intellectual disability, and high mortality.
- Mutations in the SCN1A gene, encoding the NaV1.1 sodium channel, are found in approximately 90% of DS patients.
- A specific long non-coding RNA (lncRNA) downregulates SCN1A expression, and its activity can be modulated by AntagoNATs.
Purpose of the Study:
- To develop and evaluate novel AntagoNATs delivered via adeno-associated virus serotype 9 (AAV9) gene therapy vectors for Dravet syndrome.
- To assess the efficacy of AAV9-AntagoNAT vectors in improving survival and reducing seizure frequency in a mouse model of DS.
Main Methods:
- Development of new AntagoNATs and their incorporation into AAV9 gene therapy vectors (AAV9-AntagoNAT-H and AntagoNAT-K).
- Administration of AAV9-AntagoNAT vectors to newborn Scn1a+/- mice via intracerebroventricular (i.c.v.) and intravenous (i.v.) injections.
- Evaluation of therapeutic effects on survival rates and seizure frequency (febrile and spontaneous).
Main Results:
- AAV9-AntagoNAT-H administration significantly increased survival rates in treated mice.
- A significant decrease in the frequency of both febrile and spontaneous seizures was observed.
- This study demonstrates the successful delivery of AntagoNATs using an AAV9 vector in a DS mouse model.
Conclusions:
- Delivery of AntagoNATs via AAV9 vectors represents a promising gene therapy strategy for Dravet syndrome.
- This approach has the potential to offer a one-time treatment option for DS patients by targeting SCN1A regulation.
- Further research is warranted to translate these findings into clinical applications for Dravet syndrome.
Abstract:
Dravet syndrome (DS) is a severe childhood developmental and epileptic encephalopathy. Symptoms usually manifest in the first year of life and include prolonged severe seizures, developmental delay, severe intellectual disability, and increased mortality. Approximately, 90% of patients carry a heterozygous loss-of-function mutation in SCN1A, encoding a voltage-gated sodium ion channel, NaV1.1. NaV1.1 is expressed in the brain and at a lower level, in the heart. Previous studies have identified a long non-coding RNA (lncRNA), which specifically downregulates SCN1A expression. This natural antisense transcript (NAT) can be modulated by AntagoNATs, small synthetic oligonucleotides. AntagoNATs have shown to improve seizure frequency in DS mice after repeated administration. Here, we have developed new AntagoNATs and incorporated these into an adeno-associated virus serotype 9 (AAV9) gene therapy vector. We administered two new AAV9-AntagoNAT-H and AntagoNAT-K vectors to newborn Scn1a +/- mice via intracerebroventricular (i.c.v.) and intravenous (i.v.) injection to deliver vector to the brain and heart. AAV9-AntagoNAT-H significantly increased survival, decreased the frequency of febrile and spontaneous seizures. In this proof-of-concept study, we have demonstrated for the first time the delivery of AntagoNAT via an AAV9 vector. Thus, offering the possibility of a one-time treatment for DS patients.
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