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dc.contributorVall d'Hebron Barcelona Hospital Campus
dc.contributor.authorBonaterra Pastra, Anna
dc.contributor.authorBenítez, Sònia
dc.contributor.authorPancorbo, Olalla
dc.contributor.authorRodriguez-Luna, David
dc.contributor.authorVert Soler, Carla
dc.contributor.authorRovira, Alex
dc.contributor.authorMontaner Villalonga, Joan
dc.contributor.authorHernandez Guillamon, Maria Mar
dc.date.accessioned2023-05-08T09:22:51Z
dc.date.available2023-05-08T09:22:51Z
dc.date.issued2023-04-11
dc.identifier.citationBonaterra-Pastra A, Benítez S, Pancorbo O, Rodríguez-Luna D, Vert C, Rovira A, et al. Association of candidate genetic variants and circulating levels of ApoE/ApoJ with common neuroimaging features of cerebral amyloid angiopathy. Front Aging Neurosci. 2023 Apr 11;15:1134399.
dc.identifier.issn1663-4365
dc.identifier.urihttps://hdl.handle.net/11351/9473
dc.descriptionMRI; Lipoproteins
dc.description.abstractIntroduction: Cerebral amyloid angiopathy (CAA) is characterized by the accumulation of amyloid-β (Aβ) in brain vessels and is a main cause of lobar intracerebral hemorrhage (ICH) in the elderly. CAA is associated with magnetic resonance imaging (MRI) markers of small vessel disease (SVD). Since Aβ is also accumulated in Alzheimer’s disease (AD) in the brain parenchyma, we aimed to study if several single nucleotide polymorphisms (SNPs) previously associated with AD were also associated with CAA pathology. Furthermore, we also studied the influence of APOE and CLU genetic variants in apolipoprotein E (ApoE) and clusterin/apolipoprotein J (ApoJ) circulating levels and their distribution among lipoproteins. Methods: The study was carried out in a multicentric cohort of 126 patients with lobar ICH and clinical suspicion of CAA. Results: We observed several SNPs associated with CAA neuroimaging MRI markers [cortical superficial siderosis (cSS), enlarged perivascular spaces in the centrum semiovale (CSO-EPVS), lobar cerebral microbleeds (CMB), white matter hyperintensities (WMH), corticosubcortical atrophy and CAA-SVD burden score]. Concretely, ABCA7 (rs3764650), CLU (rs9331896 and rs933188), EPHA1 (rs11767557), and TREML2 (rs3747742) were significantly associated with a CAA-SVD burden score. Regarding circulating levels of apolipoproteins, protective AD SNPs of CLU [rs11136000 (T) and rs9331896 (C)] were significantly associated with higher HDL ApoJ content in the lobar ICH cohort. APOEε2 carriers presented higher plasma and LDL-associated ApoE levels whereas APOEε4 carriers presented lower plasma ApoE levels. Additionally, we observed that lower circulating ApoJ and ApoE levels were significantly associated with CAA-related MRI markers. More specifically, lower LDL-associated ApoJ and plasma and HDL-associated ApoE levels were significantly associated with CSO-EPVS, lower ApoJ content in HDL with brain atrophy and lower ApoE content in LDL with the extent of cSS. Discussion: This study reinforces the relevance of lipid metabolism in CAA and cerebrovascular functionality. We propose that ApoJ and ApoE distribution among lipoproteins may be associated with pathological features related to CAA with higher ApoE and ApoJ levels in HDL possibly enhancing atheroprotective, antioxidative, and anti-inflammatory responses in cerebral β-amyloidosis.
dc.language.isoeng
dc.publisherFrontiers Media
dc.relation.ispartofseriesFrontiers in Aging Neuroscience;15
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.sourceScientia
dc.subjectArtèries cerebrals - Malalties - Aspectes genètics
dc.subjectArtèries cerebrals - Malalties - Imatgeria per ressonància magnètica
dc.subject.meshCerebral Amyloid Angiopathy
dc.subject.mesh/genetics
dc.subject.meshMagnetic Resonance Imaging
dc.titleAssociation of candidate genetic variants and circulating levels of ApoE/ApoJ with common neuroimaging features of cerebral amyloid angiopathy
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.3389/fnagi.2023.1134399
dc.subject.decsangiopatía amiloide cerebral
dc.subject.decs/genética
dc.subject.decsimagen por resonancia magnética
dc.relation.publishversionhttps://doi.org/10.3389/fnagi.2023.1134399
dc.type.versioninfo:eu-repo/semantics/publishedVersion
dc.audienceProfessionals
dc.contributor.organismesInstitut Català de la Salut
dc.contributor.authoraffiliation[Bonaterra-Pastra A, Hernández-Guillamon M] Laboratori de Recerca Neurovascular, Vall d’Hebron Institut de Recerca (VHIR), Barcelona, Spain. Universitat Autònoma de Barcelona, Bellaterra, Spain. [Benítez S] Cardiovascular Biochemistry Group, Research Institute of the Hospital de Sant Pau (IIB Sant Pau), Barcelona, Spain. Center for Biomedical Research Network on Diabetes and Associated Metabolic Diseases (CIBERDEM), Instituto de Salud Carlos III (ISCIII), Madrid, Spain. [Pancorbo O, Rodríguez-Luna D] Grup de Recerca en Ictus, Vall d’Hebron Institut de Recerca (VHIR), Barcelona, Spain. [Vert C, Rovira A] Grup de Recerca de Neuroradiologia, Vall d’Hebron Institut de Recerca (VHIR), Barcelona, Spain. Universitat Autònoma de Barcelona, Bellaterra, Spain. [Montaner J] Laboratori de Recerca Neurovascular, Vall d’Hebron Institut de Recerca (VHIR), Barcelona, Spain. Universitat Autònoma de Barcelona, Bellaterra, Spain. Stroke Research Program, Institute of Biomedicine of Seville (IBiS), Virgen del Rocío University Hospital, University of Seville, Seville, Spain. Department of Neurology, Virgen Macarena University Hospital, Seville, Spain
dc.identifier.pmid37113571
dc.relation.projectidinfo:eu-repo/grantAgreement/ES/PE2017-2020/PI17%2F00275
dc.relation.projectidinfo:eu-repo/grantAgreement/ES/PE2017-2020/PI20%2F00465
dc.relation.projectidinfo:eu-repo/grantAgreement/ES/PEICTI2021-2023/RD21/0006/0007
dc.rights.accessrightsinfo:eu-repo/semantics/openAccess


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