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Inhibition of acid sphingomyelinase reduces reactive astrocyte secretion of mitotoxic extracellular vesicles and improves Alzheimer’s disease pathology in the 5xFAD mouse

Producción científica: Articlerevisión exhaustiva

32 Citas (Scopus)

Resumen

In Alzheimer’s disease (AD), reactive astrocytes produce extracellular vesicles (EVs) that affect mitochondria in neurons. Here, we show that Aβ-induced generation of the sphingolipid ceramide by acid sphingomyelinase (A-SMase) triggered proinflammatory cytokine (C1q, TNF-α, IL-1α) release by microglia, which induced the reactive astrocytes phenotype and secretion of EVs enriched with ceramide. These EVs impeded the capacity of neurons to respond to energy demand. Inhibition of A-SMase with Arc39 and Imipramine reduced the secretion of cytokines from microglia, prompting us to test the effect of Imipramine on EV secretion and AD pathology in the 5xFAD mouse model. Brain derived-EVs from 5xFAD mice treated with Imipramine contained reduced levels of the astrocytic marker GFAP, ceramide, and Aβ and did not impair mitochondrial respiration when compared to EVs derived from untreated 5xFAD brain. Consistently, Imipramine-treated 5xFAD mice showed reduced AD pathology. Our study identifies A-SMase inhibitors as potential AD therapy by preventing cyotokine-elicited secretion of mitotoxic EVs from astrocytes.

Idioma originalEnglish
Número de artículo135
PublicaciónActa neuropathologica communications
Volumen11
N.º1
DOI
EstadoPublished - dic 2023

Nota bibliográfica

Publisher Copyright:
© 2023, BioMed Central Ltd., part of Springer Nature.

Financiación

Acknowledgement is made to the donors of ADR, a program of BrightFocus Foundation, for support of this research. Additionally, we would like to acknowledge the Markey Shared Resource Facility which is supported by the NCI Cancer Center Support Grant (P30 CA177558). In addition, we acknowledge the support of the Department of Physiology (Chair Dr. Alan Daugherty) at the University of Kentucky College of Medicine. This work was supported by grants to EB (National Institutes of Health: R01AG064234, R21AG078601, RF1AG078338; U.S. Department of Veterans Affairs: I01BX003643) and to SMC (BrightFocus Grant Submission No.: A20201464F; National Institute On Aging of the National Institutes of Health under Award Number P30AG028383). PGS and HV received support from Kentucky Spinal Cord and Head Injury Research Trust (KSCHIRT chair #3). Acknowledgement is made to the donors of ADR, a program of BrightFocus Foundation, for support of this research. Additionally, we would like to acknowledge the Markey Shared Resource Facility which is supported by the NCI Cancer Center Support Grant (P30 CA177558). In addition, we acknowledge the support of the Department of Physiology (Chair Dr. Alan Daugherty) at the University of Kentucky College of Medicine.

FinanciadoresNúmero del financiador
University of Kentucky College of Medicine
National Institutes of Health (NIH)RF1AG078338, R01AG064234, R21AG078601
National Childhood Cancer Registry – National Cancer InstituteP30 CA177558
U.S. Department of Veterans AffairsP30AG028383, A20201464F, I01BX003643
BrightFocus Foundation

    ASJC Scopus subject areas

    • Pathology and Forensic Medicine
    • Clinical Neurology
    • Cellular and Molecular Neuroscience

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