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Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles

Adeno-associated virus (AAV)-mediated gene transfer is an efficient method of gene over-expression in the vestibular end organs. However, AAV has limited usefulness for delivering a large gene, or multiple genes, due to its small packaging capacity (< 5 kb). Co-transduction of dual-AAV vectors ca...

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Autores principales: Chen, Zhong-Rui, Guo, Jing-Ying, He, Lu, Liu, Shan, Xu, Jun-Yi, Yang, Zi-Jing, Su, Wei, Liu, Ke, Gong, Shu-Sheng, Wang, Guo-Peng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9629838/
https://www.ncbi.nlm.nih.gov/pubmed/36340687
http://dx.doi.org/10.3389/fnmol.2022.1020803
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author Chen, Zhong-Rui
Guo, Jing-Ying
He, Lu
Liu, Shan
Xu, Jun-Yi
Yang, Zi-Jing
Su, Wei
Liu, Ke
Gong, Shu-Sheng
Wang, Guo-Peng
author_facet Chen, Zhong-Rui
Guo, Jing-Ying
He, Lu
Liu, Shan
Xu, Jun-Yi
Yang, Zi-Jing
Su, Wei
Liu, Ke
Gong, Shu-Sheng
Wang, Guo-Peng
author_sort Chen, Zhong-Rui
collection PubMed
description Adeno-associated virus (AAV)-mediated gene transfer is an efficient method of gene over-expression in the vestibular end organs. However, AAV has limited usefulness for delivering a large gene, or multiple genes, due to its small packaging capacity (< 5 kb). Co-transduction of dual-AAV vectors can be used to increase the packaging capacity for gene delivery to various organs and tissues. However, its usefulness has not been well validated in the vestibular sensory epithelium. In the present study, we characterized the co-transduction of dual-AAV vectors in mouse utricles following inoculation of two AAV-serotype inner ear (AAV-ie) vectors via canalostomy. Firstly, co-transduction efficiencies were compared between dual-AAV-ie vectors using two different promoters: cytomegalovirus (CMV) and CMV early enhancer/chicken β-actin (CAG). In the group of dual AAV-ie-CAG vectors, the co-transduction rates for striolar hair cells (HCs), extrastriolar HCs, striolar supporting cells (SCs), and extrastriolar SCs were 23.14 ± 2.25%, 27.05 ± 2.10%, 57.65 ± 7.21%, and 60.33 ± 5.69%, respectively. The co-transduction rates in the group of dual AAV-ie-CMV vectors were comparable to those in the dual AAV-ie-CAG group. Next, we examined the co-transduction of dual-AAV-ie-CAG vectors in the utricles of neonatal mice and damaged adult mice. In the neonatal mice, co-transduction rates were 52.88 ± 3.11% and 44.93 ± 2.06% in the striolar and extrastriolar HCs, respectively, which were significantly higher than those in adult mice. In the Pou4f3(+/DTR) mice, following diphtheria toxin administration, which eliminated most HCs and spared the SCs, the co-transduction rate of SCs was not significantly different to that of normal utricles. Transgene expression persisted for up to 3 months in the adult mice. Furthermore, sequential administration of two AAV-ie-CAG vectors at an interval of 1 week resulted in a higher co-transduction rate in HCs than concurrent delivery. The auditory brainstem responses and swim tests did not reveal any disruption of auditory or vestibular function after co-transduction with dual-AAV-ie vectors. In conclusion, dual-AAV-ie vectors allow efficient co-transduction in the vestibular sensory epithelium and facilitate the delivery of large or multiple genes for vestibular gene therapy.
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spelling pubmed-96298382022-11-03 Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles Chen, Zhong-Rui Guo, Jing-Ying He, Lu Liu, Shan Xu, Jun-Yi Yang, Zi-Jing Su, Wei Liu, Ke Gong, Shu-Sheng Wang, Guo-Peng Front Mol Neurosci Neuroscience Adeno-associated virus (AAV)-mediated gene transfer is an efficient method of gene over-expression in the vestibular end organs. However, AAV has limited usefulness for delivering a large gene, or multiple genes, due to its small packaging capacity (< 5 kb). Co-transduction of dual-AAV vectors can be used to increase the packaging capacity for gene delivery to various organs and tissues. However, its usefulness has not been well validated in the vestibular sensory epithelium. In the present study, we characterized the co-transduction of dual-AAV vectors in mouse utricles following inoculation of two AAV-serotype inner ear (AAV-ie) vectors via canalostomy. Firstly, co-transduction efficiencies were compared between dual-AAV-ie vectors using two different promoters: cytomegalovirus (CMV) and CMV early enhancer/chicken β-actin (CAG). In the group of dual AAV-ie-CAG vectors, the co-transduction rates for striolar hair cells (HCs), extrastriolar HCs, striolar supporting cells (SCs), and extrastriolar SCs were 23.14 ± 2.25%, 27.05 ± 2.10%, 57.65 ± 7.21%, and 60.33 ± 5.69%, respectively. The co-transduction rates in the group of dual AAV-ie-CMV vectors were comparable to those in the dual AAV-ie-CAG group. Next, we examined the co-transduction of dual-AAV-ie-CAG vectors in the utricles of neonatal mice and damaged adult mice. In the neonatal mice, co-transduction rates were 52.88 ± 3.11% and 44.93 ± 2.06% in the striolar and extrastriolar HCs, respectively, which were significantly higher than those in adult mice. In the Pou4f3(+/DTR) mice, following diphtheria toxin administration, which eliminated most HCs and spared the SCs, the co-transduction rate of SCs was not significantly different to that of normal utricles. Transgene expression persisted for up to 3 months in the adult mice. Furthermore, sequential administration of two AAV-ie-CAG vectors at an interval of 1 week resulted in a higher co-transduction rate in HCs than concurrent delivery. The auditory brainstem responses and swim tests did not reveal any disruption of auditory or vestibular function after co-transduction with dual-AAV-ie vectors. In conclusion, dual-AAV-ie vectors allow efficient co-transduction in the vestibular sensory epithelium and facilitate the delivery of large or multiple genes for vestibular gene therapy. Frontiers Media S.A. 2022-10-19 /pmc/articles/PMC9629838/ /pubmed/36340687 http://dx.doi.org/10.3389/fnmol.2022.1020803 Text en Copyright © 2022 Chen, Guo, He, Liu, Xu, Yang, Su, Liu, Gong and Wang. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Chen, Zhong-Rui
Guo, Jing-Ying
He, Lu
Liu, Shan
Xu, Jun-Yi
Yang, Zi-Jing
Su, Wei
Liu, Ke
Gong, Shu-Sheng
Wang, Guo-Peng
Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
title Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
title_full Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
title_fullStr Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
title_full_unstemmed Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
title_short Co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
title_sort co-transduction of dual-adeno-associated virus vectors in the neonatal and adult mouse utricles
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9629838/
https://www.ncbi.nlm.nih.gov/pubmed/36340687
http://dx.doi.org/10.3389/fnmol.2022.1020803
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