Regulation of Copper Transport Crossing Brain Barrier Systems by Cu-ATPases: Effect of Manganese Exposure
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Title
Regulation of Copper Transport Crossing Brain Barrier Systems by Cu-ATPases: Effect of Manganese Exposure
Authors
Keywords
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Journal
TOXICOLOGICAL SCIENCES
Volume 139, Issue 2, Pages 432-451
Publisher
Oxford University Press (OUP)
Online
2014-03-11
DOI
10.1093/toxsci/kfu048
References
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Note: Only part of the references are listed.- Mechanism of copper transport at the blood–cerebrospinal fluid barrier: influence of iron deficiency in an in vitro model
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- ATP7A Gene Addition to the Choroid Plexus Results in Long-term Rescue of the Lethal Copper Transport Defect in a Menkes Disease Mouse Model
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- ATP7A-related copper transport diseases—emerging concepts and future trends
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- Pathophysiology of manganese-associated neurotoxicity
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- Regulation of brain iron and copper homeostasis by brain barrier systems: Implication in neurodegenerative diseases
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- Ferroportin is a manganese-responsive protein that decreases manganese cytotoxicity and accumulation
- (2009) Zhaobao Yin et al. JOURNAL OF NEUROCHEMISTRY
- Longitudinal prognostic value of serum "free" copper in patients with Alzheimer disease
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- Copper transport to the brain by the blood-brain barrier and blood-CSF barrier
- (2008) Byung-Sun Choi et al. BRAIN RESEARCH
- Efflux of Iron from the Cerebrospinal Fluid to the Blood at the Blood-CSF Barrier: Effect of Manganese Exposure
- (2008) Xueqian Wang et al. EXPERIMENTAL BIOLOGY AND MEDICINE
- Chelation therapy of manganese intoxication with para-aminosalicylic acid (PAS) in Sprague–Dawley rats
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- (2007) Dorothea Strozyk et al. NEUROBIOLOGY OF AGING
- Alteration of saliva and serum concentrations of manganese, copper, zinc, cadmium and lead among career welders
- (2007) Dixin Wang et al. TOXICOLOGY LETTERS
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