Cargando…

Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy

BACKGROUND: Peripheral inflammation contributes to the neurological alterations in hepatic encephalopathy (HE). Neuroinflammation and altered GABAergic neurotransmission mediate cognitive and motor alterations in rats with HE. It remains unclear (a) if neuroinflammation and neurological impairment i...

Descripción completa

Detalles Bibliográficos
Autores principales: Dadsetan, Sherry, Balzano, Tiziano, Forteza, Jerónimo, Agusti, Ana, Cabrera-Pastor, Andrea, Taoro-Gonzalez, Lucas, Hernandez-Rabaza, Vicente, Gomez-Gimenez, Belen, ElMlili, Nisrin, Llansola, Marta, Felipo, Vicente
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5022234/
https://www.ncbi.nlm.nih.gov/pubmed/27623772
http://dx.doi.org/10.1186/s12974-016-0710-8
_version_ 1782453484039176192
author Dadsetan, Sherry
Balzano, Tiziano
Forteza, Jerónimo
Agusti, Ana
Cabrera-Pastor, Andrea
Taoro-Gonzalez, Lucas
Hernandez-Rabaza, Vicente
Gomez-Gimenez, Belen
ElMlili, Nisrin
Llansola, Marta
Felipo, Vicente
author_facet Dadsetan, Sherry
Balzano, Tiziano
Forteza, Jerónimo
Agusti, Ana
Cabrera-Pastor, Andrea
Taoro-Gonzalez, Lucas
Hernandez-Rabaza, Vicente
Gomez-Gimenez, Belen
ElMlili, Nisrin
Llansola, Marta
Felipo, Vicente
author_sort Dadsetan, Sherry
collection PubMed
description BACKGROUND: Peripheral inflammation contributes to the neurological alterations in hepatic encephalopathy (HE). Neuroinflammation and altered GABAergic neurotransmission mediate cognitive and motor alterations in rats with HE. It remains unclear (a) if neuroinflammation and neurological impairment in HE are a consequence of peripheral inflammation and (b) how neuroinflammation impairs GABAergic neurotransmission. The aims were to assess in rats with HE whether reducing peripheral inflammation with anti-TNF-α (1) prevents cognitive impairment and motor in-coordination, (2) normalizes neuroinflammation and extracellular GABA in the cerebellum and also (3) advances the understanding of mechanisms linking neuroinflammation and increased extracellular GABA. METHODS: Rats with HE due to portacaval shunt (PCS) were treated with infliximab. Astrocytes and microglia activation and TNF-α and IL-1β were analyzed by immunohistochemistry. Membrane expression of the GABA transporters GAT-3 and GAT-1 was analyzed by cross-linking with BS3. Extracellular GABA was analyzed by microdialysis. Motor coordination was tested using the beam walking and learning ability using the Y maze task. RESULTS: PCS rats show peripheral inflammation, activated astrocytes, and microglia and increased levels of TNF-α and IL-1β. Membrane expression of GAT-3 and extracellular GABA are increased, leading to impaired motor coordination and learning ability. Infliximab reduces peripheral inflammation, microglia, and astrocyte activation and neuroinflammation and normalizes GABAergic neurotransmission, motor coordination, and learning ability. CONCLUSIONS: Neuroinflammation is associated with altered GABAergic neurotransmission and increased GAT-3 membrane expression and extracellular GABA (a); peripheral inflammation is a main contributor to the impairment of motor coordination and of the ability to learn the Y maze task in PCS rats (b); and reducing peripheral inflammation using safe procedures could be a new therapeutic approach to improve cognitive and motor function in patients with HE (c).
format Online
Article
Text
id pubmed-5022234
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-50222342016-09-20 Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy Dadsetan, Sherry Balzano, Tiziano Forteza, Jerónimo Agusti, Ana Cabrera-Pastor, Andrea Taoro-Gonzalez, Lucas Hernandez-Rabaza, Vicente Gomez-Gimenez, Belen ElMlili, Nisrin Llansola, Marta Felipo, Vicente J Neuroinflammation Research BACKGROUND: Peripheral inflammation contributes to the neurological alterations in hepatic encephalopathy (HE). Neuroinflammation and altered GABAergic neurotransmission mediate cognitive and motor alterations in rats with HE. It remains unclear (a) if neuroinflammation and neurological impairment in HE are a consequence of peripheral inflammation and (b) how neuroinflammation impairs GABAergic neurotransmission. The aims were to assess in rats with HE whether reducing peripheral inflammation with anti-TNF-α (1) prevents cognitive impairment and motor in-coordination, (2) normalizes neuroinflammation and extracellular GABA in the cerebellum and also (3) advances the understanding of mechanisms linking neuroinflammation and increased extracellular GABA. METHODS: Rats with HE due to portacaval shunt (PCS) were treated with infliximab. Astrocytes and microglia activation and TNF-α and IL-1β were analyzed by immunohistochemistry. Membrane expression of the GABA transporters GAT-3 and GAT-1 was analyzed by cross-linking with BS3. Extracellular GABA was analyzed by microdialysis. Motor coordination was tested using the beam walking and learning ability using the Y maze task. RESULTS: PCS rats show peripheral inflammation, activated astrocytes, and microglia and increased levels of TNF-α and IL-1β. Membrane expression of GAT-3 and extracellular GABA are increased, leading to impaired motor coordination and learning ability. Infliximab reduces peripheral inflammation, microglia, and astrocyte activation and neuroinflammation and normalizes GABAergic neurotransmission, motor coordination, and learning ability. CONCLUSIONS: Neuroinflammation is associated with altered GABAergic neurotransmission and increased GAT-3 membrane expression and extracellular GABA (a); peripheral inflammation is a main contributor to the impairment of motor coordination and of the ability to learn the Y maze task in PCS rats (b); and reducing peripheral inflammation using safe procedures could be a new therapeutic approach to improve cognitive and motor function in patients with HE (c). BioMed Central 2016-09-13 /pmc/articles/PMC5022234/ /pubmed/27623772 http://dx.doi.org/10.1186/s12974-016-0710-8 Text en © The Author(s). 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Dadsetan, Sherry
Balzano, Tiziano
Forteza, Jerónimo
Agusti, Ana
Cabrera-Pastor, Andrea
Taoro-Gonzalez, Lucas
Hernandez-Rabaza, Vicente
Gomez-Gimenez, Belen
ElMlili, Nisrin
Llansola, Marta
Felipo, Vicente
Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
title Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
title_full Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
title_fullStr Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
title_full_unstemmed Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
title_short Infliximab reduces peripheral inflammation, neuroinflammation, and extracellular GABA in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
title_sort infliximab reduces peripheral inflammation, neuroinflammation, and extracellular gaba in the cerebellum and improves learning and motor coordination in rats with hepatic encephalopathy
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5022234/
https://www.ncbi.nlm.nih.gov/pubmed/27623772
http://dx.doi.org/10.1186/s12974-016-0710-8
work_keys_str_mv AT dadsetansherry infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT balzanotiziano infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT fortezajeronimo infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT agustiana infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT cabrerapastorandrea infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT taorogonzalezlucas infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT hernandezrabazavicente infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT gomezgimenezbelen infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT elmlilinisrin infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT llansolamarta infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy
AT felipovicente infliximabreducesperipheralinflammationneuroinflammationandextracellulargabainthecerebellumandimproveslearningandmotorcoordinationinratswithhepaticencephalopathy