Microglial depletion exacerbates axonal damage and motor dysfunction in mice with cuprizone-induced demyelination
Published 2023 View Full Article
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Title
Microglial depletion exacerbates axonal damage and motor dysfunction in mice with cuprizone-induced demyelination
Authors
Keywords
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Journal
Journal of Pharmacological Sciences
Volume 153, Issue 3, Pages 94-103
Publisher
Elsevier BV
Online
2023-08-25
DOI
10.1016/j.jphs.2023.08.004
References
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Related references
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- Motor Behavioral Deficits in the Cuprizone Model: Validity of the Rotarod Test Paradigm
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- Activated microglia drive demyelination via CSF1R signaling
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- The Cuprizone Model: Dos and Do Nots
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- Parthenolide promotes the repair of spinal cord injury by modulating M1/M2 polarization via the NF-κB and STAT 1/3 signaling pathway
- (2020) Tao Gaojian et al. Cell Death Discovery
- Effect of the CSF1R inhibitor PLX3397 on remyelination of corpus callosum in a cuprizone-induced demyelination mouse model
- (2019) Fatemeh Tahmasebi et al. JOURNAL OF CELLULAR BIOCHEMISTRY
- An updated assessment of microglia depletion: current concepts and future directions
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- Prostaglandin F2α FP receptor inhibitor reduces demyelination and motor dysfunction in a cuprizone-induced multiple sclerosis mouse model
- (2014) K. Iwasa et al. PROSTAGLANDINS LEUKOTRIENES AND ESSENTIAL FATTY ACIDS
- Minocycline reduces remyelination by suppressing ciliary neurotrophic factor expression after cuprizone-induced demyelination
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- (2010) Keisuke Yoshikawa et al. BRAIN RESEARCH
- Cerebellar Cortical Demyelination in the Murine Cuprizone Model
- (2009) Thomas Skripuletz et al. BRAIN PATHOLOGY
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