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Microglial translational profiling reveals a convergent APOE pathway from aging, amyloid, and tau
Journal article   Open access

Microglial translational profiling reveals a convergent APOE pathway from aging, amyloid, and tau

S.S. Kang, M.T.W. Ebbert, K.E. Baker, C. Cook, X. Wang, J.P. Sens, J.-P. Kocher, L. Petrucelli and J.D. Fryer
Journal of Experimental Medicine, Vol.215(9), pp.2235-2245
2018
PMID: 30082275

Abstract

Aging Alzheimer Disease Amyloid Amyloidosis Animals Apolipoproteins E Chemokine CCL3 Chemokine CCL4 Disease Models, Animal Female Male Mice Mice, Transgenic Microglia Signal Transduction tau Proteins amyloid apolipoprotein E chemokine receptor CX3CR1 messenger RNA ribosomal protein L22 ribosome protein tau protein transcriptome unclassified drug amyloid apolipoprotein E Ccl3 protein, mouse Ccl4 protein, mouse macrophage inflammatory protein 1alpha macrophage inflammatory protein 1beta tau protein aging Alzheimer disease amyloidosis animal cell animal experiment animal model animal tissue Article cell isolation cell selection comparative study controlled study gene regulatory network microglia molecular pathology mouse muscle stem cell neuropathology nonhuman priority journal promoter region RNA isolation RNA sequence RNA translation signal transduction tauopathy transcriptomics aging Alzheimer disease animal disease model female genetics immunology male microglia pathology transgenic mouse
url
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85055867324&doi=10.1084%2fjem.20180653&partnerID=40&md5=361caca3a2d629368b4ebbcb2d4d6606View
url
https://doi.org/10.1084/jem.20180653View
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