Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy
Spinal muscular atrophy (SMA) is an inherited neurodegenerative disease caused by insufficient levels of the survival motor neuron protein (SMN), leading to progressive deterioration of α-motor neurons, onset of muscle atrophy and, in severe disease, death. We investigated whether reducing the size...
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2014
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ndltd-uottawa.ca-oai-ruor.uottawa.ca-10393-318032018-01-05T19:02:08Z Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy McFall, Emily Parks, Robin Adenovirus Spinal muscular atrophy (SMA) is an inherited neurodegenerative disease caused by insufficient levels of the survival motor neuron protein (SMN), leading to progressive deterioration of α-motor neurons, onset of muscle atrophy and, in severe disease, death. We investigated whether reducing the size of Adenovirus (Ad) vectors, through use of a short fibre protein, could enhance delivery of a transgene to muscle and motor neurons after systemic delivery in vivo. Unfortunately, the biodistribution of the smaller Ad vector was unaltered compared to wildtype Ad, with most of the virus localizing to the liver. However, we determined Ad-derived SMN was efficiently packaged into cellular exosomes, suggesting a novel approach to protein delivery. We showed that exosomes naturally contain SMN both in vitro and in vivo and that exosomes can be used to deliver SMN to recipient cells. Further testing is required to establish if SMN-containing exosomes can function as an SMA therapeutic. 2014-11-21T17:52:07Z 2016-11-07T09:00:08Z 2014 2014 Thesis http://hdl.handle.net/10393/31803 http://dx.doi.org/10.20381/ruor-6563 en Université d'Ottawa / University of Ottawa |
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NDLTD |
language |
en |
sources |
NDLTD |
topic |
Adenovirus |
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Adenovirus McFall, Emily Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy |
description |
Spinal muscular atrophy (SMA) is an inherited neurodegenerative disease caused by insufficient levels of the survival motor neuron protein (SMN), leading to progressive deterioration of α-motor neurons, onset of muscle atrophy and, in severe disease, death. We investigated whether reducing the size of Adenovirus (Ad) vectors, through use of a short fibre protein, could enhance delivery of a transgene to muscle and motor neurons after systemic delivery in vivo. Unfortunately, the biodistribution of the smaller Ad vector was unaltered compared to wildtype Ad, with most of the virus localizing to the liver. However, we determined Ad-derived SMN was efficiently packaged into cellular exosomes, suggesting a novel approach to protein delivery. We showed that exosomes naturally contain SMN both in vitro and in vivo and that exosomes can be used to deliver SMN to recipient cells. Further testing is required to establish if SMN-containing exosomes can function as an SMA therapeutic. |
author2 |
Parks, Robin |
author_facet |
Parks, Robin McFall, Emily |
author |
McFall, Emily |
author_sort |
McFall, Emily |
title |
Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy |
title_short |
Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy |
title_full |
Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy |
title_fullStr |
Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy |
title_full_unstemmed |
Exploring Novel Methods to Achieve Systemic Delivery of SMN for Treatment of Spinal Muscular Atrophy |
title_sort |
exploring novel methods to achieve systemic delivery of smn for treatment of spinal muscular atrophy |
publisher |
Université d'Ottawa / University of Ottawa |
publishDate |
2014 |
url |
http://hdl.handle.net/10393/31803 http://dx.doi.org/10.20381/ruor-6563 |
work_keys_str_mv |
AT mcfallemily exploringnovelmethodstoachievesystemicdeliveryofsmnfortreatmentofspinalmuscularatrophy |
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1718598171107524608 |