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Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2

Dysferlinopathy treatment is an active area of investigation. Gene therapy is one potential approach. We studied muscle regeneration and inflammatory response after injection of an AAV-9 with a codon-optimized DYSF gene. A dual-vector system AAV.DYSF.OVERLAP with overlapping DYSF cDNA sequences was...

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Autores principales: Yakovlev, Ivan A., Emelin, Aleksei M., Slesarenko, Yana S., Limaev, Igor S., Vetrova, Iuliia A., Belikova, Liliya D., Grafskaia, Ekaterina N., Bobrovsky, Pavel A., Pokrovsky, Mikhail V., Kuzubova, Elena V., Pokrovsky, Vladimir M., Lebedev, Pyotr A., Bardakov, Sergei N., Isaev, Artur A., Deev, Roman V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10488094/
https://www.ncbi.nlm.nih.gov/pubmed/37686363
http://dx.doi.org/10.3390/ijms241713551
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author Yakovlev, Ivan A.
Emelin, Aleksei M.
Slesarenko, Yana S.
Limaev, Igor S.
Vetrova, Iuliia A.
Belikova, Liliya D.
Grafskaia, Ekaterina N.
Bobrovsky, Pavel A.
Pokrovsky, Mikhail V.
Kuzubova, Elena V.
Pokrovsky, Vladimir M.
Lebedev, Pyotr A.
Bardakov, Sergei N.
Isaev, Artur A.
Deev, Roman V.
author_facet Yakovlev, Ivan A.
Emelin, Aleksei M.
Slesarenko, Yana S.
Limaev, Igor S.
Vetrova, Iuliia A.
Belikova, Liliya D.
Grafskaia, Ekaterina N.
Bobrovsky, Pavel A.
Pokrovsky, Mikhail V.
Kuzubova, Elena V.
Pokrovsky, Vladimir M.
Lebedev, Pyotr A.
Bardakov, Sergei N.
Isaev, Artur A.
Deev, Roman V.
author_sort Yakovlev, Ivan A.
collection PubMed
description Dysferlinopathy treatment is an active area of investigation. Gene therapy is one potential approach. We studied muscle regeneration and inflammatory response after injection of an AAV-9 with a codon-optimized DYSF gene. A dual-vector system AAV.DYSF.OVERLAP with overlapping DYSF cDNA sequences was generated. Two AAV vectors were separately assembled by a standard triple-transfection protocol from plasmids carrying parts of the DYSF gene. Artificial myoblasts from dysferlin-deficient fibroblasts were obtained by MyoD overexpression. RT-PCR and Western blot were used for RNA and protein detection in vitro. A dysferlinopathy murine model (Bla/J) was used for in vivo studies. Histological assay, morphometry, and IHC were used for the muscle tissue analysis. Dysferlin was detected in vitro and in vivo at subphysiological levels. RT-PCR and Western Blot detected dysferlin mRNA and protein in AAV.DYSF.OVERLAP-transduced cells, and mRNA reached a 7-fold elevated level compared to the reference gene (GAPDH). In vivo, the experimental group showed intermediate median values for the proportion of necrotic muscle fibers, muscle fibers with internalized nuclei, and cross-sectional area of muscle fibers compared to the same parameters in the control groups of WT and Bla/J mice, although the differences were not statistically significant. The inverse relationship between the dosage and the severity of inflammatory changes in the muscles may be attributed to the decrease in the number of necrotic fibers. The share of transduced myofibers reached almost 35% in the group with the highest dose. The use of two-vector systems based on AAV is justified in terms of therapeutic efficacy. The expression of dysferlin at a subphysiological level, within a short observation period, is capable of inducing the restoration of muscle tissue structure, reducing inflammatory activity, and mitigating necrotic processes. Further research is needed to provide a more detailed assessment of the impact of the transgene and viral vector on the inflammatory component, including longer observation periods.
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spelling pubmed-104880942023-09-09 Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2 Yakovlev, Ivan A. Emelin, Aleksei M. Slesarenko, Yana S. Limaev, Igor S. Vetrova, Iuliia A. Belikova, Liliya D. Grafskaia, Ekaterina N. Bobrovsky, Pavel A. Pokrovsky, Mikhail V. Kuzubova, Elena V. Pokrovsky, Vladimir M. Lebedev, Pyotr A. Bardakov, Sergei N. Isaev, Artur A. Deev, Roman V. Int J Mol Sci Article Dysferlinopathy treatment is an active area of investigation. Gene therapy is one potential approach. We studied muscle regeneration and inflammatory response after injection of an AAV-9 with a codon-optimized DYSF gene. A dual-vector system AAV.DYSF.OVERLAP with overlapping DYSF cDNA sequences was generated. Two AAV vectors were separately assembled by a standard triple-transfection protocol from plasmids carrying parts of the DYSF gene. Artificial myoblasts from dysferlin-deficient fibroblasts were obtained by MyoD overexpression. RT-PCR and Western blot were used for RNA and protein detection in vitro. A dysferlinopathy murine model (Bla/J) was used for in vivo studies. Histological assay, morphometry, and IHC were used for the muscle tissue analysis. Dysferlin was detected in vitro and in vivo at subphysiological levels. RT-PCR and Western Blot detected dysferlin mRNA and protein in AAV.DYSF.OVERLAP-transduced cells, and mRNA reached a 7-fold elevated level compared to the reference gene (GAPDH). In vivo, the experimental group showed intermediate median values for the proportion of necrotic muscle fibers, muscle fibers with internalized nuclei, and cross-sectional area of muscle fibers compared to the same parameters in the control groups of WT and Bla/J mice, although the differences were not statistically significant. The inverse relationship between the dosage and the severity of inflammatory changes in the muscles may be attributed to the decrease in the number of necrotic fibers. The share of transduced myofibers reached almost 35% in the group with the highest dose. The use of two-vector systems based on AAV is justified in terms of therapeutic efficacy. The expression of dysferlin at a subphysiological level, within a short observation period, is capable of inducing the restoration of muscle tissue structure, reducing inflammatory activity, and mitigating necrotic processes. Further research is needed to provide a more detailed assessment of the impact of the transgene and viral vector on the inflammatory component, including longer observation periods. MDPI 2023-08-31 /pmc/articles/PMC10488094/ /pubmed/37686363 http://dx.doi.org/10.3390/ijms241713551 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yakovlev, Ivan A.
Emelin, Aleksei M.
Slesarenko, Yana S.
Limaev, Igor S.
Vetrova, Iuliia A.
Belikova, Liliya D.
Grafskaia, Ekaterina N.
Bobrovsky, Pavel A.
Pokrovsky, Mikhail V.
Kuzubova, Elena V.
Pokrovsky, Vladimir M.
Lebedev, Pyotr A.
Bardakov, Sergei N.
Isaev, Artur A.
Deev, Roman V.
Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2
title Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2
title_full Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2
title_fullStr Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2
title_full_unstemmed Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2
title_short Dual Adeno-Associated Virus 9 with Codon-Optimized DYSF Gene Promotes In Vivo Muscle Regeneration and May Decrease Inflammatory Response in Limb Girdle Muscular Dystrophy Type R2
title_sort dual adeno-associated virus 9 with codon-optimized dysf gene promotes in vivo muscle regeneration and may decrease inflammatory response in limb girdle muscular dystrophy type r2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10488094/
https://www.ncbi.nlm.nih.gov/pubmed/37686363
http://dx.doi.org/10.3390/ijms241713551
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