Cargando…

Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model

BACKGROUND: Niemann-Pick disease type C (NPC) is a rare prematurely fatal lysosomal lipid storage disease with limited therapeutic options. The prominent neuropathological hallmarks include hypomyelination and cerebellar atrophy. We previously demonstrated the efficacy of recombinant human heat shoc...

Descripción completa

Detalles Bibliográficos
Autores principales: Gray, James, Fernández-Suárez, María E., Falah, Maysa, Smith, David, Smith, Claire, Kaya, Ecem, Palmer, Ashley M., Fog, Cathrine K., Kirkegaard, Thomas, Platt, Frances M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713282/
https://www.ncbi.nlm.nih.gov/pubmed/36455410
http://dx.doi.org/10.1016/j.ebiom.2022.104374
_version_ 1784841985137311744
author Gray, James
Fernández-Suárez, María E.
Falah, Maysa
Smith, David
Smith, Claire
Kaya, Ecem
Palmer, Ashley M.
Fog, Cathrine K.
Kirkegaard, Thomas
Platt, Frances M.
author_facet Gray, James
Fernández-Suárez, María E.
Falah, Maysa
Smith, David
Smith, Claire
Kaya, Ecem
Palmer, Ashley M.
Fog, Cathrine K.
Kirkegaard, Thomas
Platt, Frances M.
author_sort Gray, James
collection PubMed
description BACKGROUND: Niemann-Pick disease type C (NPC) is a rare prematurely fatal lysosomal lipid storage disease with limited therapeutic options. The prominent neuropathological hallmarks include hypomyelination and cerebellar atrophy. We previously demonstrated the efficacy of recombinant human heat shock protein 70 (rhHSP70) in preclinical models of the disease. It reduced glycosphingolipid levels in the central nervous system (CNS), improving cerebellar myelination and improved behavioural phenotypes in Npc1(nih) (Npc1(−/−)) mice. Furthermore, treatment with arimoclomol, a well-characterised HSP amplifier, attenuated lysosomal storage in NPC patient fibroblasts and improved neurological symptoms in Npc1(−/−) mice. Taken together, these findings prompted the investigation of the effects of HSP amplification on CNS myelination. METHODS: We administered bimoclomol daily or rhHSP70 6 times per week to Npc1(−/−) (BALB/cNctr-Npc1(m1N)/J, also named Npc1(nih)) mice by intraperitoneal injection from P7 through P34 to investigate the impact on CNS myelination. The Src-kinase inhibitor saracatinib was administered with/without bimoclomol twice daily to explore the contribution of Fyn kinase to bimoclomol's effects. FINDINGS: Treatment with either bimoclomol or rhHSP70 improved myelination and increased the numbers of mature oligodendrocytes (OLs) as well as the ratio of active-to-inactive forms of phosphorylated Fyn kinase in the cerebellum of Npc1(−/−) mice. Additionally, treatment with bimoclomol preserved cerebellar weight, an effect that was abrogated when co-administered with saracatinib, an inhibitor of Fyn kinase. Bimoclomol-treated mice also exhibited increased numbers of immature OLs within the cortex. INTERPRETATION: These data increase our understanding of the mechanisms by which HSP70 regulates myelination and provide further support for the clinical development of HSP-amplifying therapies in the treatment of NPC. FUNDING: Funding for this study was provided by Orphazyme A/S (Copenhagen, Denmark) and a Pathfinder Award from The Wellcome Trust.
format Online
Article
Text
id pubmed-9713282
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Elsevier
record_format MEDLINE/PubMed
spelling pubmed-97132822022-12-02 Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model Gray, James Fernández-Suárez, María E. Falah, Maysa Smith, David Smith, Claire Kaya, Ecem Palmer, Ashley M. Fog, Cathrine K. Kirkegaard, Thomas Platt, Frances M. eBioMedicine Articles BACKGROUND: Niemann-Pick disease type C (NPC) is a rare prematurely fatal lysosomal lipid storage disease with limited therapeutic options. The prominent neuropathological hallmarks include hypomyelination and cerebellar atrophy. We previously demonstrated the efficacy of recombinant human heat shock protein 70 (rhHSP70) in preclinical models of the disease. It reduced glycosphingolipid levels in the central nervous system (CNS), improving cerebellar myelination and improved behavioural phenotypes in Npc1(nih) (Npc1(−/−)) mice. Furthermore, treatment with arimoclomol, a well-characterised HSP amplifier, attenuated lysosomal storage in NPC patient fibroblasts and improved neurological symptoms in Npc1(−/−) mice. Taken together, these findings prompted the investigation of the effects of HSP amplification on CNS myelination. METHODS: We administered bimoclomol daily or rhHSP70 6 times per week to Npc1(−/−) (BALB/cNctr-Npc1(m1N)/J, also named Npc1(nih)) mice by intraperitoneal injection from P7 through P34 to investigate the impact on CNS myelination. The Src-kinase inhibitor saracatinib was administered with/without bimoclomol twice daily to explore the contribution of Fyn kinase to bimoclomol's effects. FINDINGS: Treatment with either bimoclomol or rhHSP70 improved myelination and increased the numbers of mature oligodendrocytes (OLs) as well as the ratio of active-to-inactive forms of phosphorylated Fyn kinase in the cerebellum of Npc1(−/−) mice. Additionally, treatment with bimoclomol preserved cerebellar weight, an effect that was abrogated when co-administered with saracatinib, an inhibitor of Fyn kinase. Bimoclomol-treated mice also exhibited increased numbers of immature OLs within the cortex. INTERPRETATION: These data increase our understanding of the mechanisms by which HSP70 regulates myelination and provide further support for the clinical development of HSP-amplifying therapies in the treatment of NPC. FUNDING: Funding for this study was provided by Orphazyme A/S (Copenhagen, Denmark) and a Pathfinder Award from The Wellcome Trust. Elsevier 2022-11-28 /pmc/articles/PMC9713282/ /pubmed/36455410 http://dx.doi.org/10.1016/j.ebiom.2022.104374 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Articles
Gray, James
Fernández-Suárez, María E.
Falah, Maysa
Smith, David
Smith, Claire
Kaya, Ecem
Palmer, Ashley M.
Fog, Cathrine K.
Kirkegaard, Thomas
Platt, Frances M.
Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model
title Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model
title_full Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model
title_fullStr Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model
title_full_unstemmed Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model
title_short Heat shock protein amplification improves cerebellar myelination in the Npc1(nih) mouse model
title_sort heat shock protein amplification improves cerebellar myelination in the npc1(nih) mouse model
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9713282/
https://www.ncbi.nlm.nih.gov/pubmed/36455410
http://dx.doi.org/10.1016/j.ebiom.2022.104374
work_keys_str_mv AT grayjames heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT fernandezsuarezmariae heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT falahmaysa heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT smithdavid heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT smithclaire heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT kayaecem heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT palmerashleym heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT fogcathrinek heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT kirkegaardthomas heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel
AT plattfrancesm heatshockproteinamplificationimprovescerebellarmyelinationinthenpc1nihmousemodel