ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.

Bibliographic Details
Main Authors: Veronica Astillero-Lopez, Sandra Villar-Conde, Melania Gonzalez-Rodriguez, Alicia Flores-Cuadrado, Isabel Ubeda-Banon, Daniel Saiz-Sanchez, Alino Martinez-Marcos
Format: Article
Language:English
Published: Elsevier 2023-10-01
Series:IBRO Neuroscience Reports
Online Access:http://www.sciencedirect.com/science/article/pii/S266724212300742X
_version_ 1797636337786945536
author Veronica Astillero-Lopez
Sandra Villar-Conde
Melania Gonzalez-Rodriguez
Alicia Flores-Cuadrado
Isabel Ubeda-Banon
Daniel Saiz-Sanchez
Alino Martinez-Marcos
author_facet Veronica Astillero-Lopez
Sandra Villar-Conde
Melania Gonzalez-Rodriguez
Alicia Flores-Cuadrado
Isabel Ubeda-Banon
Daniel Saiz-Sanchez
Alino Martinez-Marcos
author_sort Veronica Astillero-Lopez
collection DOAJ
first_indexed 2024-03-11T12:33:53Z
format Article
id doaj.art-affd79cc4676464cbb16da450b7494fb
institution Directory Open Access Journal
issn 2667-2421
language English
last_indexed 2024-03-11T12:33:53Z
publishDate 2023-10-01
publisher Elsevier
record_format Article
series IBRO Neuroscience Reports
spelling doaj.art-affd79cc4676464cbb16da450b7494fb2023-11-06T04:23:43ZengElsevierIBRO Neuroscience Reports2667-24212023-10-0115S361ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.Veronica Astillero-Lopez0Sandra Villar-Conde1Melania Gonzalez-Rodriguez2Alicia Flores-Cuadrado3Isabel Ubeda-Banon4Daniel Saiz-Sanchez5Alino Martinez-Marcos6Ciudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, SpainCiudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, SpainCiudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, SpainCiudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, SpainCiudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, SpainCiudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, SpainCiudad Real Medical School, University of Castilla-La Mancha, Neuroplasticity And Neurodegeneration Laboratory, Crib, Idiscam, Ciudad Real, Spainhttp://www.sciencedirect.com/science/article/pii/S266724212300742X
spellingShingle Veronica Astillero-Lopez
Sandra Villar-Conde
Melania Gonzalez-Rodriguez
Alicia Flores-Cuadrado
Isabel Ubeda-Banon
Daniel Saiz-Sanchez
Alino Martinez-Marcos
ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.
IBRO Neuroscience Reports
title ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.
title_full ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.
title_fullStr ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.
title_full_unstemmed ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.
title_short ROLE OF ANXA2, HSP90AA1 AND PTK2B IN SYNAPTIC HOMEOSTASIS THROUGH MICROGLIAL CELLS IN THE HUMAN ENTORHINAL CORTEX IN ALZHEIMER’S DISEASE.
title_sort role of anxa2 hsp90aa1 and ptk2b in synaptic homeostasis through microglial cells in the human entorhinal cortex in alzheimer s disease
url http://www.sciencedirect.com/science/article/pii/S266724212300742X
work_keys_str_mv AT veronicaastillerolopez roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease
AT sandravillarconde roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease
AT melaniagonzalezrodriguez roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease
AT aliciaflorescuadrado roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease
AT isabelubedabanon roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease
AT danielsaizsanchez roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease
AT alinomartinezmarcos roleofanxa2hsp90aa1andptk2binsynaptichomeostasisthroughmicroglialcellsinthehumanentorhinalcortexinalzheimersdisease