Web of Science: 8 cites, Scopus: 9 cites, Google Scholar: cites,
Modulation of neurolipid signaling and specific lipid species in the triple transgenic mouse model of alzheimer's disease
González de San Román, Estíbaliz (Universidad del País Vasco. Departamento de Farmacología)
Llorente Ovejero, Alberto (Universidad del País Vasco. Departamento de Farmacología)
Martínez Gardeazabal, Jonatan (Universidad del País Vasco. Departamento de Farmacología)
Moreno-Rodríguez, Marta (Universidad del País Vasco. Departamento de Farmacología)
Gimenez-Llort, Lydia (Universitat Autònoma de Barcelona. Departament de Psiquiatria i de Medicina Legal)
Manuel, Ivan (Instituto de Investigación Sanitaria Biocruces Bizkaia)
Rodríguez-Puertas, Rafael (Instituto de Investigación Sanitaria Biocruces Bizkaia)
Universitat Autònoma de Barcelona. Institut de Neurociències

Data: 2021
Resum: Alzheimer's disease (AD) is a progressive neurodegenerative disorder and the most common cause of dementia in aging populations. Recently, the regulation of neurolipid-mediated signaling and cerebral lipid species was shown in AD patients. The triple transgenic mouse model (3xTg-AD), harboring βAPPSwe, PS1M146V, and tauP301L transgenes, mimics many critical aspects of AD neuropathology and progressively develops neuropathological markers. Thus, in the present study, 3xTg-AD mice have been used to test the involvement of the neurolipid-based signaling by endocannabinoids (eCB), lysophosphatidic acid (LPA), and sphingosine 1-phosphate (S1P) in relation to the lipid deregulation. [S]GTPγS autoradiography was used in the presence of specific agonists WIN55,212-2, LPA and CYM5442, to measure the activity mediated by CB1, LPA1, and S1P1 Gi/0 coupled receptors, respectively. Consecutive slides were used to analyze the relative intensities of multiple lipid species by MALDI Mass spectrometry imaging (MSI) with microscopic anatomical resolution. The quantitative analysis of the astrocyte population was performed by immunohistochemistry. CB1 receptor activity was decreased in the amygdala and motor cortex of 3xTg-AD mice, but LPA1 activity was increased in the corpus callosum, motor cortex, hippocampal CA1 area, and striatum. Conversely, S1P1 activity was reduced in hippocampal areas. Moreover, the observed modifications on PC, PA, SM, and PI intensities in different brain areas depend on their fatty acid composition, including decrease of polyunsaturated fatty acid (PUFA) phospholipids and increase of species containing saturated fatty acids (SFA). The regulation of some lipid species in specific brain regions together with the modulation of the eCB, LPA, and S1P signaling in 3xTg-AD mice indicate a neuroprotective adaptation to improve neurotransmission, relieve the myelination dysfunction, and to attenuate astrocyte-mediated neuroinflammation. These results could contribute to identify new therapeutic strategies based on the regulation of the lipid signaling in familial AD patients.
Ajuts: Instituto de Salud Carlos III PI20/00153
Drets: Aquest document està subjecte a una llicència d'ús Creative Commons. Es permet la reproducció total o parcial, la distribució, la comunicació pública de l'obra i la creació d'obres derivades, fins i tot amb finalitats comercials, sempre i quan es reconegui l'autoria de l'obra original. Creative Commons
Llengua: Anglès
Document: Article ; recerca ; Versió publicada
Publicat a: International journal of molecular sciences, Vol. 22, Issue 22 (November 2021) , art. 12256, ISSN 1422-0067

DOI: 10.3390/ijms222212256
PMID: 34830150


22 p, 4.6 MB

El registre apareix a les col·leccions:
Documents de recerca > Documents dels grups de recerca de la UAB > Centres i grups de recerca (producció científica) > Ciències de la salut i biociències > Institut de Neurociències (INc)
Articles > Articles de recerca
Articles > Articles publicats

 Registre creat el 2023-02-14, darrera modificació el 2023-05-21



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