Cargando…

Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes

ATP-binding cassette (ABC) transporters prevent the access of pharmacological compounds to the ischemic brain, thereby impeding the efficacy of stroke therapies. ABC transporters can be deactivated by selective inhibitors, which potently increase the brain accumulation of drugs. Concerns have been r...

Descripción completa

Detalles Bibliográficos
Autores principales: Manrique-Castano, Daniel, Sardari, Maryam, Silva de Carvalho, Tayana, Doeppner, Thorsten R., Popa-Wagner, Aurel, Kleinschnitz, Christoph, Chan, Andrew, Hermann, Dirk M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6751309/
https://www.ncbi.nlm.nih.gov/pubmed/31572128
http://dx.doi.org/10.3389/fncel.2019.00412
_version_ 1783452597137440768
author Manrique-Castano, Daniel
Sardari, Maryam
Silva de Carvalho, Tayana
Doeppner, Thorsten R.
Popa-Wagner, Aurel
Kleinschnitz, Christoph
Chan, Andrew
Hermann, Dirk M.
author_facet Manrique-Castano, Daniel
Sardari, Maryam
Silva de Carvalho, Tayana
Doeppner, Thorsten R.
Popa-Wagner, Aurel
Kleinschnitz, Christoph
Chan, Andrew
Hermann, Dirk M.
author_sort Manrique-Castano, Daniel
collection PubMed
description ATP-binding cassette (ABC) transporters prevent the access of pharmacological compounds to the ischemic brain, thereby impeding the efficacy of stroke therapies. ABC transporters can be deactivated by selective inhibitors, which potently increase the brain accumulation of drugs. Concerns have been raised that long-term ABC transporter deactivation may promote neuronal degeneration and, under conditions of ischemic stroke, compromise neurological recovery. To elucidate this issue, we exposed male C57BL/6 mice to transient intraluminal middle cerebral artery occlusion (MCAO) and examined the effects of the selective ABCB1 inhibitor tariquidar (8 mg/kg/day) or ABCC1 inhibitor MK-571 (10 mg/kg/day), which were administered alone or in combination with each other over up to 28 days, on neurological recovery and brain injury. Mice were sacrificed after 14, 28, or 56 days. The Clark score, RotaRod, tight rope, and open field tests revealed reproducible motor-coordination deficits in mice exposed to intraluminal MCAO, which were not influenced by ABCB1, ABCC1, or combined ABCB1 and ABCC1 deactivation. Brain volume, striatum volume, and corpus callosum thickness were not altered by ABCB1, ABCC1 or ABCB1, and ABCC1 inhibitors. Similarly, neuronal survival and reactive astrogliosis, evaluated by NeuN and GFAP immunohistochemistry in the ischemic striatum, were unchanged. Iba1 immunohistochemistry revealed no changes of the overall density of activated microglia in the ischemic striatum of ABC transporter inhibitor treated mice, but subtle changes of microglial morphology, that is, reduced microglial cell volume by ABCB1 deactivation after 14 and 28 days and reduced microglial ramification by ABCB1, ABCC1 and combined ABCB1 and ABCC1 deactivation after 56 days. Endogenous neurogenesis, assessed by BrdU incorporation analysis, was not influenced by ABCB1, ABCC1 or combined ABCB1 and ABCC1 deactivation. Taken together, this study could not detect any exacerbation of neurological deficits or brain injury after long-term ABC transporter deactivation in this preclinical stroke model.
format Online
Article
Text
id pubmed-6751309
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-67513092019-09-30 Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes Manrique-Castano, Daniel Sardari, Maryam Silva de Carvalho, Tayana Doeppner, Thorsten R. Popa-Wagner, Aurel Kleinschnitz, Christoph Chan, Andrew Hermann, Dirk M. Front Cell Neurosci Neuroscience ATP-binding cassette (ABC) transporters prevent the access of pharmacological compounds to the ischemic brain, thereby impeding the efficacy of stroke therapies. ABC transporters can be deactivated by selective inhibitors, which potently increase the brain accumulation of drugs. Concerns have been raised that long-term ABC transporter deactivation may promote neuronal degeneration and, under conditions of ischemic stroke, compromise neurological recovery. To elucidate this issue, we exposed male C57BL/6 mice to transient intraluminal middle cerebral artery occlusion (MCAO) and examined the effects of the selective ABCB1 inhibitor tariquidar (8 mg/kg/day) or ABCC1 inhibitor MK-571 (10 mg/kg/day), which were administered alone or in combination with each other over up to 28 days, on neurological recovery and brain injury. Mice were sacrificed after 14, 28, or 56 days. The Clark score, RotaRod, tight rope, and open field tests revealed reproducible motor-coordination deficits in mice exposed to intraluminal MCAO, which were not influenced by ABCB1, ABCC1, or combined ABCB1 and ABCC1 deactivation. Brain volume, striatum volume, and corpus callosum thickness were not altered by ABCB1, ABCC1 or ABCB1, and ABCC1 inhibitors. Similarly, neuronal survival and reactive astrogliosis, evaluated by NeuN and GFAP immunohistochemistry in the ischemic striatum, were unchanged. Iba1 immunohistochemistry revealed no changes of the overall density of activated microglia in the ischemic striatum of ABC transporter inhibitor treated mice, but subtle changes of microglial morphology, that is, reduced microglial cell volume by ABCB1 deactivation after 14 and 28 days and reduced microglial ramification by ABCB1, ABCC1 and combined ABCB1 and ABCC1 deactivation after 56 days. Endogenous neurogenesis, assessed by BrdU incorporation analysis, was not influenced by ABCB1, ABCC1 or combined ABCB1 and ABCC1 deactivation. Taken together, this study could not detect any exacerbation of neurological deficits or brain injury after long-term ABC transporter deactivation in this preclinical stroke model. Frontiers Media S.A. 2019-09-12 /pmc/articles/PMC6751309/ /pubmed/31572128 http://dx.doi.org/10.3389/fncel.2019.00412 Text en Copyright © 2019 Manrique-Castano, Sardari, Silva de Carvalho, Doeppner, Popa-Wagner, Kleinschnitz, Chan and Hermann. 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) and the copyright owner(s) 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
Manrique-Castano, Daniel
Sardari, Maryam
Silva de Carvalho, Tayana
Doeppner, Thorsten R.
Popa-Wagner, Aurel
Kleinschnitz, Christoph
Chan, Andrew
Hermann, Dirk M.
Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes
title Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes
title_full Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes
title_fullStr Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes
title_full_unstemmed Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes
title_short Deactivation of ATP-Binding Cassette Transporters ABCB1 and ABCC1 Does Not Influence Post-ischemic Neurological Deficits, Secondary Neurodegeneration and Neurogenesis, but Induces Subtle Microglial Morphological Changes
title_sort deactivation of atp-binding cassette transporters abcb1 and abcc1 does not influence post-ischemic neurological deficits, secondary neurodegeneration and neurogenesis, but induces subtle microglial morphological changes
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6751309/
https://www.ncbi.nlm.nih.gov/pubmed/31572128
http://dx.doi.org/10.3389/fncel.2019.00412
work_keys_str_mv AT manriquecastanodaniel deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT sardarimaryam deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT silvadecarvalhotayana deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT doeppnerthorstenr deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT popawagneraurel deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT kleinschnitzchristoph deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT chanandrew deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges
AT hermanndirkm deactivationofatpbindingcassettetransportersabcb1andabcc1doesnotinfluencepostischemicneurologicaldeficitssecondaryneurodegenerationandneurogenesisbutinducessubtlemicroglialmorphologicalchanges