An alkaline phosphatase transport mechanism in the pathogenesis of Alzheimer's disease and neurodegeneration

Publication date

2015-01-25

Authors

Pike, Adrianne FISNI 0000000507296462
Kramer, NynkeISNI 0000000419427047
Blaauboer, BasISNI 0000000032620811
Seinen, WillemISNI 0000000392563590
Brands, Ruud

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Document Type

Article
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taverne

Abstract

Systemic inflammation is associated with loss of blood-brain barrier integrity and neuroinflammation that lead to the exacerbation of neurodegenerative diseases. It is also associated specifically with the characteristic amyloid-β and tau pathologies of Alzheimer's disease. We have previously proposed an immunosurveillance mechanism for epithelial barriers involving negative feedback-regulated alkaline phosphatase transcytosis as an acute phase anti-inflammatory response that hangs in the balance between the resolution and the progression of inflammation. We now extend this model to endothelial barriers, particularly the blood-brain barrier, and present a literature-supported mechanistic explanation for Alzheimer's disease pathology with this system at its foundation. In this mechanism, a switch in the role of alkaline phosphatase from its baseline duties to a stopgap anti-inflammatory function results in the loss of alkaline phosphatase from cell membranes into circulation, thereby decreasing blood-brain barrier integrity and functionality. This occurs with impairment of both amyloid-β efflux and tau dephosphorylating activity in the brain as alkaline phosphatase is replenished at the barrier by receptor-mediated transport. We suggest systemic alkaline phosphatase administration as a potential therapy for the resolution of inflammation and the prevention of Alzheimer's disease pathology as well as that of other inflammation-related neurodegenerative diseases.

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Taverne

Citation

Pike, A F, Kramer, N I, Blaauboer, B J, Seinen, W & Brands, R 2015, 'An alkaline phosphatase transport mechanism in the pathogenesis of Alzheimer's disease and neurodegeneration', Chemico-Biological Interactions, vol. 226, pp. 30-39. https://doi.org/10.1016/j.cbi.2014.12.006