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Deletion of tumor necrosis factor-α ameliorates neurodegeneration in Sandhoff disease mice.
- Source :
-
Human molecular genetics [Hum Mol Genet] 2013 Oct 01; Vol. 22 (19), pp. 3960-75. Date of Electronic Publication: 2013 May 31. - Publication Year :
- 2013
-
Abstract
- Sandhoff disease (SD) is a lysosomal storage disorder caused by a lack of a functional β-subunit of the β-hexosaminidase A and B enzymes, leading to the accumulation of gangliosides in the central nervous system (CNS). The Hexb-/- mouse model of SD shows a progressive neurodegenerative phenotype similar to the human equivalent. Previous studies have revealed that Hexb-/- mice suffer from chronic neuroinflammation characterized by microglial activation and expansion. Tumor necrosis factor-α (TNFα), a key modulator of the CNS immune response in models of neurodegeneration, is a hallmark of this activation. In this study, we explore the role of TNFα in the development and progression of SD in mice, by creating a Hexb-/- Tnfα-/- double-knockout mouse. Our results revealed that the double-knockout mice have an ameliorated disease course, with an extended lifespan, enhanced sensorimotor coordination and improved neurological function. TNFα-deficient SD mice also show decreased levels of astrogliosis and reduced neuronal cell death, with no alterations in neuronal storage of gangliosides. Interestingly, temporal microglia activation appears similar between the Hexb-/- Tnfα-/- and SD mice. Evidence is provided for the TNFα activation of the JAK2/STAT3 pathway as a mechanism for astrocyte activation in the disease. Bone marrow transplantation experiments reveal that both CNS-derived and bone marrow-derived TNFα have a pathological effect in SD mouse models, with CNS-derived TNFα playing a larger role. This study reveals TNFα as a neurodegenerative cytokine mediating astrogliosis and neuronal cell death in SD and points to TNFα as a potential therapeutic target to attenuate neuropathogenesis.
- Subjects :
- Animals
Bone Marrow Transplantation
Brain metabolism
Cell Death
Disease Models, Animal
Female
Gangliosides metabolism
Gliosis genetics
Gliosis pathology
Humans
Mice
Mice, Knockout
Microglia metabolism
Sandhoff Disease genetics
Sandhoff Disease therapy
Signal Transduction
beta-N-Acetylhexosaminidases genetics
beta-N-Acetylhexosaminidases metabolism
Sandhoff Disease metabolism
Sandhoff Disease pathology
Tumor Necrosis Factor-alpha genetics
Tumor Necrosis Factor-alpha physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1460-2083
- Volume :
- 22
- Issue :
- 19
- Database :
- MEDLINE
- Journal :
- Human molecular genetics
- Publication Type :
- Academic Journal
- Accession number :
- 23727835
- Full Text :
- https://doi.org/10.1093/hmg/ddt250