Cargando…

Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation

AIMS: Some central nervous system pathogens express neuraminidase (NA) on their surfaces. In the rat brain, a single intracerebroventricular (ICV) injection of NA induces myelin vacuolation in axonal tracts. Here, we explore the nature, the time course, and the role of the complement system in this...

Descripción completa

Detalles Bibliográficos
Autores principales: Granados-Durán, Pablo, López-Ávalos, María Dolores, Cifuentes, Manuel, Pérez-Martín, Margarita, Fernández-Arjona, María del Mar, Hughes, Timothy R., Johnson, Krista, Morgan, B. Paul, Fernández-Llebrez, Pedro, Grondona, Jesús M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5339270/
https://www.ncbi.nlm.nih.gov/pubmed/28326060
http://dx.doi.org/10.3389/fneur.2017.00078
_version_ 1782512626148835328
author Granados-Durán, Pablo
López-Ávalos, María Dolores
Cifuentes, Manuel
Pérez-Martín, Margarita
Fernández-Arjona, María del Mar
Hughes, Timothy R.
Johnson, Krista
Morgan, B. Paul
Fernández-Llebrez, Pedro
Grondona, Jesús M.
author_facet Granados-Durán, Pablo
López-Ávalos, María Dolores
Cifuentes, Manuel
Pérez-Martín, Margarita
Fernández-Arjona, María del Mar
Hughes, Timothy R.
Johnson, Krista
Morgan, B. Paul
Fernández-Llebrez, Pedro
Grondona, Jesús M.
author_sort Granados-Durán, Pablo
collection PubMed
description AIMS: Some central nervous system pathogens express neuraminidase (NA) on their surfaces. In the rat brain, a single intracerebroventricular (ICV) injection of NA induces myelin vacuolation in axonal tracts. Here, we explore the nature, the time course, and the role of the complement system in this damage. METHODS: The spatiotemporal analysis of myelin vacuolation was performed by optical and electron microscopy. Myelin basic protein-positive area and oligodendrocyte transcription factor (Olig2)-positive cells were quantified in the damaged bundles. Neuronal death in the affected axonal tracts was assessed by Fluoro-Jade B and anti-caspase-3 staining. To evaluate the role of the complement, membrane attack complex (MAC) deposition on damaged bundles was analyzed using anti-C5b9. Rats ICV injected with the anaphylatoxin C5a were studied for myelin damage. In addition, NA-induced vacuolation was studied in rats with different degrees of complement inhibition: normal rats treated with anti-C5-blocking antibody and C6-deficient rats. RESULTS: The stria medullaris, the optic chiasm, and the fimbria were the most consistently damaged axonal tracts. Vacuolation peaked 7 days after NA injection and reverted by day 15. Olig2+ cell number in the damaged tracts was unaltered, and neurodegeneration associated with myelin alterations was not detected. MAC was absent on damaged axonal tracts, as revealed by C5b9 immunostaining. Rats ICV injected with the anaphylatoxin C5a displayed no myelin injury. When the complement system was experimentally or constitutively inhibited, NA-induced myelin vacuolation was similar to that observed in normal rats. CONCLUSION: Microbial NA induces a moderate and transient myelin vacuolation that is not caused either by neuroinflammation or complement system activation.
format Online
Article
Text
id pubmed-5339270
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-53392702017-03-21 Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation Granados-Durán, Pablo López-Ávalos, María Dolores Cifuentes, Manuel Pérez-Martín, Margarita Fernández-Arjona, María del Mar Hughes, Timothy R. Johnson, Krista Morgan, B. Paul Fernández-Llebrez, Pedro Grondona, Jesús M. Front Neurol Neuroscience AIMS: Some central nervous system pathogens express neuraminidase (NA) on their surfaces. In the rat brain, a single intracerebroventricular (ICV) injection of NA induces myelin vacuolation in axonal tracts. Here, we explore the nature, the time course, and the role of the complement system in this damage. METHODS: The spatiotemporal analysis of myelin vacuolation was performed by optical and electron microscopy. Myelin basic protein-positive area and oligodendrocyte transcription factor (Olig2)-positive cells were quantified in the damaged bundles. Neuronal death in the affected axonal tracts was assessed by Fluoro-Jade B and anti-caspase-3 staining. To evaluate the role of the complement, membrane attack complex (MAC) deposition on damaged bundles was analyzed using anti-C5b9. Rats ICV injected with the anaphylatoxin C5a were studied for myelin damage. In addition, NA-induced vacuolation was studied in rats with different degrees of complement inhibition: normal rats treated with anti-C5-blocking antibody and C6-deficient rats. RESULTS: The stria medullaris, the optic chiasm, and the fimbria were the most consistently damaged axonal tracts. Vacuolation peaked 7 days after NA injection and reverted by day 15. Olig2+ cell number in the damaged tracts was unaltered, and neurodegeneration associated with myelin alterations was not detected. MAC was absent on damaged axonal tracts, as revealed by C5b9 immunostaining. Rats ICV injected with the anaphylatoxin C5a displayed no myelin injury. When the complement system was experimentally or constitutively inhibited, NA-induced myelin vacuolation was similar to that observed in normal rats. CONCLUSION: Microbial NA induces a moderate and transient myelin vacuolation that is not caused either by neuroinflammation or complement system activation. Frontiers Media S.A. 2017-03-07 /pmc/articles/PMC5339270/ /pubmed/28326060 http://dx.doi.org/10.3389/fneur.2017.00078 Text en Copyright © 2017 Granados-Durán, López-Ávalos, Cifuentes, Pérez-Martín, Fernández-Arjona, Hughes, Johnson, Morgan, Fernández-Llebrez and Grondona. http://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) or licensor 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
Granados-Durán, Pablo
López-Ávalos, María Dolores
Cifuentes, Manuel
Pérez-Martín, Margarita
Fernández-Arjona, María del Mar
Hughes, Timothy R.
Johnson, Krista
Morgan, B. Paul
Fernández-Llebrez, Pedro
Grondona, Jesús M.
Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation
title Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation
title_full Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation
title_fullStr Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation
title_full_unstemmed Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation
title_short Microbial Neuraminidase Induces a Moderate and Transient Myelin Vacuolation Independent of Complement System Activation
title_sort microbial neuraminidase induces a moderate and transient myelin vacuolation independent of complement system activation
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5339270/
https://www.ncbi.nlm.nih.gov/pubmed/28326060
http://dx.doi.org/10.3389/fneur.2017.00078
work_keys_str_mv AT granadosduranpablo microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT lopezavalosmariadolores microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT cifuentesmanuel microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT perezmartinmargarita microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT fernandezarjonamariadelmar microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT hughestimothyr microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT johnsonkrista microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT morganbpaul microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT fernandezllebrezpedro microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation
AT grondonajesusm microbialneuraminidaseinducesamoderateandtransientmyelinvacuolationindependentofcomplementsystemactivation