Cargando…

Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice

Hypertriglyceridemia is not only a serious risk factor in the development of cardiovascular diseases, but it is linked to neurodegeneration, too. Previously, we generated transgenic mice overexpressing the human APOB-100 protein, a mouse model of human atherosclerosis. In this model we observed high...

Descripción completa

Detalles Bibliográficos
Autores principales: Hoyk, Zsófia, Tóth, Melinda E., Lénárt, Nikolett, Nagy, Dóra, Dukay, Brigitta, Csefová, Alexandra, Zvara, Ágnes, Seprényi, György, Kincses, András, Walter, Fruzsina R., Veszelka, Szilvia, Vígh, Judit, Barabási, Beáta, Harazin, András, Kittel, Ágnes, Puskás, László G., Penke, Botond, Vígh, László, Deli, Mária A., Sántha, Miklós
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6209654/
https://www.ncbi.nlm.nih.gov/pubmed/30410436
http://dx.doi.org/10.3389/fncel.2018.00380
_version_ 1783366939532328960
author Hoyk, Zsófia
Tóth, Melinda E.
Lénárt, Nikolett
Nagy, Dóra
Dukay, Brigitta
Csefová, Alexandra
Zvara, Ágnes
Seprényi, György
Kincses, András
Walter, Fruzsina R.
Veszelka, Szilvia
Vígh, Judit
Barabási, Beáta
Harazin, András
Kittel, Ágnes
Puskás, László G.
Penke, Botond
Vígh, László
Deli, Mária A.
Sántha, Miklós
author_facet Hoyk, Zsófia
Tóth, Melinda E.
Lénárt, Nikolett
Nagy, Dóra
Dukay, Brigitta
Csefová, Alexandra
Zvara, Ágnes
Seprényi, György
Kincses, András
Walter, Fruzsina R.
Veszelka, Szilvia
Vígh, Judit
Barabási, Beáta
Harazin, András
Kittel, Ágnes
Puskás, László G.
Penke, Botond
Vígh, László
Deli, Mária A.
Sántha, Miklós
author_sort Hoyk, Zsófia
collection PubMed
description Hypertriglyceridemia is not only a serious risk factor in the development of cardiovascular diseases, but it is linked to neurodegeneration, too. Previously, we generated transgenic mice overexpressing the human APOB-100 protein, a mouse model of human atherosclerosis. In this model we observed high plasma levels of triglycerides, oxidative stress, tau hyperphosphorylation, synaptic dysfunction, cognitive impairment, increased neural apoptosis and neurodegeneration. Neurovascular dysfunction is recognized as a key factor in the development of neurodegenerative diseases, but the cellular and molecular events linking cerebrovascular pathology and neurodegeneration are not fully understood. Our aim was to study cerebrovascular changes in APOB-100 transgenic mice. We described the kinetics of the development of chronic hypertriglyceridemia in the transgenic animals. Increased blood-brain barrier permeability was found in the hippocampus of APOB-100 transgenic mice which was accompanied by structural changes. Using transmission electron microscopy, we detected changes in the brain capillary endothelial tight junction structure and edematous swelling of astrocyte endfeet. In brain microvessels isolated from APOB-100 transgenic animals increased Lox-1, Aqp4, and decreased Meox-2, Mfsd2a, Abcb1a, Lrp2, Glut-1, Nos2, Nos3, Vim, and in transgenic brains reduced Cdh2 and Gfap-σ gene expressions were measured using quantitative real-time PCR. We confirmed the decreased P-glycoprotein (ABCB1) and vimentin expression related to the neurovascular unit by immunostaining in transgenic brain sections using confocal microscopy. We conclude that in chronic hypertriglyceridemic APOB-100 transgenic mice both functional and morphological cerebrovascular pathology can be observed, and this animal model could be a useful tool to study the link between cerebrovascular pathology and neurodegeneration.
format Online
Article
Text
id pubmed-6209654
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-62096542018-11-08 Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice Hoyk, Zsófia Tóth, Melinda E. Lénárt, Nikolett Nagy, Dóra Dukay, Brigitta Csefová, Alexandra Zvara, Ágnes Seprényi, György Kincses, András Walter, Fruzsina R. Veszelka, Szilvia Vígh, Judit Barabási, Beáta Harazin, András Kittel, Ágnes Puskás, László G. Penke, Botond Vígh, László Deli, Mária A. Sántha, Miklós Front Cell Neurosci Cellular Neuroscience Hypertriglyceridemia is not only a serious risk factor in the development of cardiovascular diseases, but it is linked to neurodegeneration, too. Previously, we generated transgenic mice overexpressing the human APOB-100 protein, a mouse model of human atherosclerosis. In this model we observed high plasma levels of triglycerides, oxidative stress, tau hyperphosphorylation, synaptic dysfunction, cognitive impairment, increased neural apoptosis and neurodegeneration. Neurovascular dysfunction is recognized as a key factor in the development of neurodegenerative diseases, but the cellular and molecular events linking cerebrovascular pathology and neurodegeneration are not fully understood. Our aim was to study cerebrovascular changes in APOB-100 transgenic mice. We described the kinetics of the development of chronic hypertriglyceridemia in the transgenic animals. Increased blood-brain barrier permeability was found in the hippocampus of APOB-100 transgenic mice which was accompanied by structural changes. Using transmission electron microscopy, we detected changes in the brain capillary endothelial tight junction structure and edematous swelling of astrocyte endfeet. In brain microvessels isolated from APOB-100 transgenic animals increased Lox-1, Aqp4, and decreased Meox-2, Mfsd2a, Abcb1a, Lrp2, Glut-1, Nos2, Nos3, Vim, and in transgenic brains reduced Cdh2 and Gfap-σ gene expressions were measured using quantitative real-time PCR. We confirmed the decreased P-glycoprotein (ABCB1) and vimentin expression related to the neurovascular unit by immunostaining in transgenic brain sections using confocal microscopy. We conclude that in chronic hypertriglyceridemic APOB-100 transgenic mice both functional and morphological cerebrovascular pathology can be observed, and this animal model could be a useful tool to study the link between cerebrovascular pathology and neurodegeneration. Frontiers Media S.A. 2018-10-25 /pmc/articles/PMC6209654/ /pubmed/30410436 http://dx.doi.org/10.3389/fncel.2018.00380 Text en Copyright © 2018 Hoyk, Tóth, Lénárt, Nagy, Dukay, Csefová, Zvara, Seprényi, Kincses, Walter, Veszelka, Vígh, Barabási, Harazin, Kittel, Puskás, Penke, Vígh, Deli and Sántha. 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 Cellular Neuroscience
Hoyk, Zsófia
Tóth, Melinda E.
Lénárt, Nikolett
Nagy, Dóra
Dukay, Brigitta
Csefová, Alexandra
Zvara, Ágnes
Seprényi, György
Kincses, András
Walter, Fruzsina R.
Veszelka, Szilvia
Vígh, Judit
Barabási, Beáta
Harazin, András
Kittel, Ágnes
Puskás, László G.
Penke, Botond
Vígh, László
Deli, Mária A.
Sántha, Miklós
Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice
title Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice
title_full Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice
title_fullStr Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice
title_full_unstemmed Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice
title_short Cerebrovascular Pathology in Hypertriglyceridemic APOB-100 Transgenic Mice
title_sort cerebrovascular pathology in hypertriglyceridemic apob-100 transgenic mice
topic Cellular Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6209654/
https://www.ncbi.nlm.nih.gov/pubmed/30410436
http://dx.doi.org/10.3389/fncel.2018.00380
work_keys_str_mv AT hoykzsofia cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT tothmelindae cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT lenartnikolett cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT nagydora cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT dukaybrigitta cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT csefovaalexandra cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT zvaraagnes cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT seprenyigyorgy cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT kincsesandras cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT walterfruzsinar cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT veszelkaszilvia cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT vighjudit cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT barabasibeata cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT harazinandras cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT kittelagnes cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT puskaslaszlog cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT penkebotond cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT vighlaszlo cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT delimariaa cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice
AT santhamiklos cerebrovascularpathologyinhypertriglyceridemicapob100transgenicmice