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1.
Glia ; 69(5): 1251-1267, 2021 05.
Artículo en Inglés | MEDLINE | ID: mdl-33410555

RESUMEN

Microglia, the immune cells of the brain, are important for neurodevelopment and have been hypothesized to play a role in the pathogenesis of schizophrenia (SCZ). Although previous postmortem studies pointed toward presence of microglial activation, this view has been challenged by more recent hypothesis-driven and hypothesis-free analyses. The aim of the present study is to further understand the observed microglial changes in SCZ. We first performed a detailed meta-analysis on studies that analyzed microglial cell density, microglial morphology, and expression of microglial-specific markers. We then further explored findings from the temporal cortex by performing immunostainings and qPCRs on an additional dataset. A random effect meta-analysis showed that the density of microglial cells was unaltered in SCZ (ES: 0.144 95% CI: 0.102 to 0.390, p = .250), and clear changes in microglial morphology were also absent. The expression of several microglial specific genes, such as CX3CR1, CSF1R, IRF8, OLR1, and TMEM119 was decreased in SCZ (ES: -0.417 95% CI: -0.417 to -0.546, p < .0001), consistent with genome-wide transcriptome meta-analysis results. These results indicate a change in microglial phenotype rather than density, which was validated with the use of TMEM119/Iba1 immunostainings on temporal cortex of a separate cohort. Changes in microglial gene expression were overlapping between SCZ and other psychiatric disorders, but largely opposite from changes reported in Alzheimer's disease. This distinct microglial phenotype provides a crucial molecular hallmark for future research into the role of microglia in SCZ and other psychiatric disorders.


Asunto(s)
Enfermedad de Alzheimer , Esquizofrenia , Biomarcadores , Encéfalo , Perfilación de la Expresión Génica , Humanos , Microglía , Esquizofrenia/genética
2.
Nat Commun ; 13(1): 1036, 2022 02 24.
Artículo en Inglés | MEDLINE | ID: mdl-35210419

RESUMEN

Following the decline of neurogenesis at birth, progenitors of the subventricular zone (SVZ) remain mostly in a quiescent state in the adult human brain. The mechanisms that regulate this quiescent state are still unclear. Here, we isolate CD271+ progenitors from the aged human SVZ for single-cell RNA sequencing analysis. Our transcriptome data reveal the identity of progenitors of the aged human SVZ as late oligodendrocyte progenitor cells. We identify the Wnt pathway antagonist SFRP1 as a possible signal that promotes quiescence of progenitors from the aged human SVZ. Administration of WAY-316606, a small molecule that inhibits SFRP1 function, stimulates activation of neural stem cells both in vitro and in vivo under homeostatic conditions. Our data unravel a possible mechanism through which progenitors of the adult human SVZ are maintained in a quiescent state and a potential target for stimulating progenitors to re-activate.


Asunto(s)
Ventrículos Laterales , Células-Madre Neurales , Anciano , Encéfalo/metabolismo , Diferenciación Celular/genética , Humanos , Péptidos y Proteínas de Señalización Intercelular/metabolismo , Ventrículos Laterales/metabolismo , Proteínas de la Membrana/genética , Proteínas de la Membrana/metabolismo , Células-Madre Neurales/metabolismo , Neurogénesis/genética , Transcriptoma
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