Lysosomal acidification impairment in astrocyte-mediated neuroinflammation DOI Creative Commons
Jialiu Zeng,

Jonathan Indajang,

David Pitt

et al.

Journal of Neuroinflammation, Journal Year: 2025, Volume and Issue: 22(1)

Published: March 10, 2025

Abstract Astrocytes are a major cell type in the central nervous system (CNS) that play key role regulating homeostatic functions, responding to injuries, and maintaining blood-brain barrier. also regulate neuronal functions survival by modulating myelination degradation of pathological toxic protein aggregates. have recently been proposed possess both autophagic activity active phagocytic capability which largely depend on sufficiently acidified lysosomes for complete cellular cargos. Defective lysosomal acidification astrocytes impairs their resulting accumulation debris, excessive myelin lipids, aggregates, ultimately contributes propagation neuroinflammation neurodegenerative pathology. Restoration impaired represent new neuroprotective strategy therapeutic direction. In this review, we summarize pathogenic factors, including neuroinflammatory signaling, metabolic stressors, lipid mediated toxicity, contribute impairment associated dysfunction astrocytes. We discuss astrocyte-mediated primarily context diseases along with other brain injuries. then highlight re-acidification as restore well degradative capacity conclude providing future perspectives phagocytes crosstalk CNS cells impart or effects.

Language: Английский

Lysosomal acidification impairment in astrocyte-mediated neuroinflammation DOI Creative Commons
Jialiu Zeng,

Jonathan Indajang,

David Pitt

et al.

Journal of Neuroinflammation, Journal Year: 2025, Volume and Issue: 22(1)

Published: March 10, 2025

Abstract Astrocytes are a major cell type in the central nervous system (CNS) that play key role regulating homeostatic functions, responding to injuries, and maintaining blood-brain barrier. also regulate neuronal functions survival by modulating myelination degradation of pathological toxic protein aggregates. have recently been proposed possess both autophagic activity active phagocytic capability which largely depend on sufficiently acidified lysosomes for complete cellular cargos. Defective lysosomal acidification astrocytes impairs their resulting accumulation debris, excessive myelin lipids, aggregates, ultimately contributes propagation neuroinflammation neurodegenerative pathology. Restoration impaired represent new neuroprotective strategy therapeutic direction. In this review, we summarize pathogenic factors, including neuroinflammatory signaling, metabolic stressors, lipid mediated toxicity, contribute impairment associated dysfunction astrocytes. We discuss astrocyte-mediated primarily context diseases along with other brain injuries. then highlight re-acidification as restore well degradative capacity conclude providing future perspectives phagocytes crosstalk CNS cells impart or effects.

Language: Английский

Citations

0