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Full-Text Articles in Neuroscience and Neurobiology

Regulation And Function Of Trem2-Dependent Pathways In Neurodegeneration, Wilbur Madison Song May 2020

Regulation And Function Of Trem2-Dependent Pathways In Neurodegeneration, Wilbur Madison Song

Arts & Sciences Electronic Theses and Dissertations

Carriers of the R47H allele of the microglia-specific lipid receptor TREM2 have a greatly increased risk of developing Alzheimerճ disease. The objective of this dissertation is to develop further mechanistic knowledge about how TREM2 is regulated and how TREM2 mutations affect microglia and neurodegeneration. Using an in vitro reporter assay, we find that several AD risk-associated TREM2 mutations decrease ligand-dependent activation. Using humanized TREM2 mice, we find that in vivo, the R47H mutation leads to reduced microglia activation and response to A_, as well as decreased shedding of soluble TREM2. These results suggest that TREM2 is protective during disease. We …


The Role Of Apolipoprotein E In Regulating Tau Pathogenesis And Neurodegeneration In A Tauopathy Mouse Model, Yang Shi Dec 2018

The Role Of Apolipoprotein E In Regulating Tau Pathogenesis And Neurodegeneration In A Tauopathy Mouse Model, Yang Shi

Arts & Sciences Electronic Theses and Dissertations

APOE4 is the strongest genetic risk factor for late-onset Alzheimer's disease (AD). APOE4 increases brain amyloid-β (Aβ) pathology relative to other APOE isoforms. However, whether APOE independently influences tau pathology, the other pathological hallmark of AD and other tauopathies, or tau-mediated neurodegeneration, is not clear. By generating P301S tau transgenic mice on either a human APOE knock in (KI) or APOE knockout (KO) background, we show that the presence of human APOE, regardless of APOE isoforms, leads to various degrees of brain atrophy in 9-month old P301S mice, whereas APOE ablation strongly protects against neurodegeneration. In particular, P301S/E4 mice develop …


Peripheral Administration Of The Soluble Tnf Inhibitor Xpro1595 Modifies Brain Immune Cell Profiles, Decreases Beta-Amyloid Plaque Load, And Rescues Impaired Long-Term Potentiation In 5xfad Mice, Kathryn P. Macpherson, Pradoldej Sompol, George T. Kannarkat, Jianjun Chang, Lindsey Sniffen, Mary E. Wildner, Christopher M. Norris, Malú G. Tansey Jun 2017

Peripheral Administration Of The Soluble Tnf Inhibitor Xpro1595 Modifies Brain Immune Cell Profiles, Decreases Beta-Amyloid Plaque Load, And Rescues Impaired Long-Term Potentiation In 5xfad Mice, Kathryn P. Macpherson, Pradoldej Sompol, George T. Kannarkat, Jianjun Chang, Lindsey Sniffen, Mary E. Wildner, Christopher M. Norris, Malú G. Tansey

Sanders-Brown Center on Aging Faculty Publications

Clinical and animal model studies have implicated inflammation and peripheral immune cell responses in the pathophysiology of Alzheimer’s disease (AD). Peripheral immune cells including T cells circulate in the cerebrospinal fluid (CSF) of healthy adults and are found in the brains of AD patients and AD rodent models. Blocking entry of peripheral macrophages into the CNS was reported to increase amyloid burden in an AD mouse model. To assess inflammation in the 5xFAD (Tg) mouse model, we first quantified central and immune cell profiles in the deep cervical lymph nodes and spleen. In the brains of Tg mice, activated (MHCII …