Cargando…

Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior

BACKGROUND: Mucopolysaccharidosis type I (MPSI) is caused by a deficiency in alpha-L iduronidase (IDUA), which leads to lysosomal accumulation of the glycosaminoglycans (GAGs) dermatan and heparan sulfate. While the currently available therapies have good systemic effects, they only minimally affect...

Descripción completa

Detalles Bibliográficos
Autores principales: da Silva, Flávia Helena, Pereira, Vanessa Gonçalves, Yasumura, Eduardo G, Tenório, Lígia Zacchi, de Carvalho, Leonardo Pinto, Lisboa, Bianca Cristina Garcia, Matsumoto, Priscila Keiko, Stilhano, Roberta Sessa, Samoto, Vivian Y, Calegare, Bruno Frederico Aguilar, Brandão, Letícia de Campos, D’Almeida, Vânia, Filippo, Thaís RM, Porcionatto, Marimélia, Toma, Leny, Nader, Helena Bonciani, Valero, Valderez Bastos, Camassola, Melissa, Nardi, Nance Beyer, Han, Sang Won
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3404940/
https://www.ncbi.nlm.nih.gov/pubmed/22520214
http://dx.doi.org/10.1186/1479-0556-10-2
_version_ 1782239046840352768
author da Silva, Flávia Helena
Pereira, Vanessa Gonçalves
Yasumura, Eduardo G
Tenório, Lígia Zacchi
de Carvalho, Leonardo Pinto
Lisboa, Bianca Cristina Garcia
Matsumoto, Priscila Keiko
Stilhano, Roberta Sessa
Samoto, Vivian Y
Calegare, Bruno Frederico Aguilar
Brandão, Letícia de Campos
D’Almeida, Vânia
Filippo, Thaís RM
Porcionatto, Marimélia
Toma, Leny
Nader, Helena Bonciani
Valero, Valderez Bastos
Camassola, Melissa
Nardi, Nance Beyer
Han, Sang Won
author_facet da Silva, Flávia Helena
Pereira, Vanessa Gonçalves
Yasumura, Eduardo G
Tenório, Lígia Zacchi
de Carvalho, Leonardo Pinto
Lisboa, Bianca Cristina Garcia
Matsumoto, Priscila Keiko
Stilhano, Roberta Sessa
Samoto, Vivian Y
Calegare, Bruno Frederico Aguilar
Brandão, Letícia de Campos
D’Almeida, Vânia
Filippo, Thaís RM
Porcionatto, Marimélia
Toma, Leny
Nader, Helena Bonciani
Valero, Valderez Bastos
Camassola, Melissa
Nardi, Nance Beyer
Han, Sang Won
author_sort da Silva, Flávia Helena
collection PubMed
description BACKGROUND: Mucopolysaccharidosis type I (MPSI) is caused by a deficiency in alpha-L iduronidase (IDUA), which leads to lysosomal accumulation of the glycosaminoglycans (GAGs) dermatan and heparan sulfate. While the currently available therapies have good systemic effects, they only minimally affect the neurodegenerative process. Based on the neuroprotective and tissue regenerative properties of mesenchymal stem cells (MSCs), we hypothesized that the administration of MSCs transduced with a murine leukemia virus (MLV) vector expressing IDUA to IDUA KO mouse brains could reduce GAG deposition in the brain and, as a result, improve neurofunctionality, as measured by exploratory activity. METHODS: MSCs infected with an MLV vector encoding IDUA were injected into the left ventricle of the brain of 12- or 25-month-old IDUA KO mice. The behavior of the treated mice in the elevated plus maze and open field tests was observed for 1 to 2 months. Following these observations, the brains were removed for biochemical and histological analyses. RESULTS: After 1 or 2 months of observation, the presence of the transgene in the brain tissue of almost all of the treated mice was confirmed using PCR, and a significant reduction in GAG deposition was observed. This reduction was directly reflected in an improvement in exploratory activity in the open field and the elevated plus maze tests. Despite these behavioral improvements and the reduction in GAG deposition, IDUA activity was undetectable in these samples. Overall, these results indicate that while the initial level of IDUA was not sustainable for a month, it was enough to reduce and maintain low GAG deposition and improve the exploratory activity for months. CONCLUSIONS: These data show that gene therapy, via the direct injection of IDUA-expressing MSCs into the brain, is an effective way to treat neurodegeneration in MPSI mice.
format Online
Article
Text
id pubmed-3404940
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-34049402012-07-26 Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior da Silva, Flávia Helena Pereira, Vanessa Gonçalves Yasumura, Eduardo G Tenório, Lígia Zacchi de Carvalho, Leonardo Pinto Lisboa, Bianca Cristina Garcia Matsumoto, Priscila Keiko Stilhano, Roberta Sessa Samoto, Vivian Y Calegare, Bruno Frederico Aguilar Brandão, Letícia de Campos D’Almeida, Vânia Filippo, Thaís RM Porcionatto, Marimélia Toma, Leny Nader, Helena Bonciani Valero, Valderez Bastos Camassola, Melissa Nardi, Nance Beyer Han, Sang Won Genet Vaccines Ther Research BACKGROUND: Mucopolysaccharidosis type I (MPSI) is caused by a deficiency in alpha-L iduronidase (IDUA), which leads to lysosomal accumulation of the glycosaminoglycans (GAGs) dermatan and heparan sulfate. While the currently available therapies have good systemic effects, they only minimally affect the neurodegenerative process. Based on the neuroprotective and tissue regenerative properties of mesenchymal stem cells (MSCs), we hypothesized that the administration of MSCs transduced with a murine leukemia virus (MLV) vector expressing IDUA to IDUA KO mouse brains could reduce GAG deposition in the brain and, as a result, improve neurofunctionality, as measured by exploratory activity. METHODS: MSCs infected with an MLV vector encoding IDUA were injected into the left ventricle of the brain of 12- or 25-month-old IDUA KO mice. The behavior of the treated mice in the elevated plus maze and open field tests was observed for 1 to 2 months. Following these observations, the brains were removed for biochemical and histological analyses. RESULTS: After 1 or 2 months of observation, the presence of the transgene in the brain tissue of almost all of the treated mice was confirmed using PCR, and a significant reduction in GAG deposition was observed. This reduction was directly reflected in an improvement in exploratory activity in the open field and the elevated plus maze tests. Despite these behavioral improvements and the reduction in GAG deposition, IDUA activity was undetectable in these samples. Overall, these results indicate that while the initial level of IDUA was not sustainable for a month, it was enough to reduce and maintain low GAG deposition and improve the exploratory activity for months. CONCLUSIONS: These data show that gene therapy, via the direct injection of IDUA-expressing MSCs into the brain, is an effective way to treat neurodegeneration in MPSI mice. BioMed Central 2012-04-20 /pmc/articles/PMC3404940/ /pubmed/22520214 http://dx.doi.org/10.1186/1479-0556-10-2 Text en Copyright ©2012 da Silva et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
da Silva, Flávia Helena
Pereira, Vanessa Gonçalves
Yasumura, Eduardo G
Tenório, Lígia Zacchi
de Carvalho, Leonardo Pinto
Lisboa, Bianca Cristina Garcia
Matsumoto, Priscila Keiko
Stilhano, Roberta Sessa
Samoto, Vivian Y
Calegare, Bruno Frederico Aguilar
Brandão, Letícia de Campos
D’Almeida, Vânia
Filippo, Thaís RM
Porcionatto, Marimélia
Toma, Leny
Nader, Helena Bonciani
Valero, Valderez Bastos
Camassola, Melissa
Nardi, Nance Beyer
Han, Sang Won
Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior
title Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior
title_full Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior
title_fullStr Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior
title_full_unstemmed Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior
title_short Treatment of adult MPSI mouse brains with IDUA-expressing mesenchymal stem cells decreases GAG deposition and improves exploratory behavior
title_sort treatment of adult mpsi mouse brains with idua-expressing mesenchymal stem cells decreases gag deposition and improves exploratory behavior
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3404940/
https://www.ncbi.nlm.nih.gov/pubmed/22520214
http://dx.doi.org/10.1186/1479-0556-10-2
work_keys_str_mv AT dasilvaflaviahelena treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT pereiravanessagoncalves treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT yasumuraeduardog treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT tenorioligiazacchi treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT decarvalholeonardopinto treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT lisboabiancacristinagarcia treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT matsumotopriscilakeiko treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT stilhanorobertasessa treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT samotoviviany treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT calegarebrunofredericoaguilar treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT brandaoleticiadecampos treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT dalmeidavania treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT filippothaisrm treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT porcionattomarimelia treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT tomaleny treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT naderhelenabonciani treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT valerovalderezbastos treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT camassolamelissa treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT nardinancebeyer treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior
AT hansangwon treatmentofadultmpsimousebrainswithiduaexpressingmesenchymalstemcellsdecreasesgagdepositionandimprovesexploratorybehavior