keyword
https://read.qxmd.com/read/38262166/anti-sft2d2-autoantibodies-alter-dendrite-spine-and-cause-psychotic-behavior-in-mice
#21
JOURNAL ARTICLE
Duilin Liu, Zhongman Jin, Hui Wei, Caiyun Zhu, Kejiang Liu, Pengsheng You, Jiahang Ju, Jinming Xu, Wanwan Zhu, Qi Xu
BACKGROUND: Autoimmunity plays an important role in schizophrenia (SCZ). Autoantibodies against SFT2D2 have been reported in patients with SCZ; however, the specific mechanism remains unclear. This study aimed to describe an autoimmune model, namely, mice immunized against SFT2D2-peptides. METHODS: ApoE-/- and WT mice (C57BL/6) were immunized four times (day 0, day 14, day 21, day 35) with SFT2D2 peptide or KLH via subcutaneous injection. Behavioral tests were conducted after the third immunization, and immunochemistry of brain tissue were performed after the sacrifice of the mice...
January 10, 2024: Journal of Psychiatric Research
https://read.qxmd.com/read/38244754/altered-metabolism-and-dam-signatures-in-female-brains-and-microglia-with-aging
#22
JOURNAL ARTICLE
Nicholas R W Cleland, Garrett J Potter, Courtney Buck, Daphne Quang, Dean Oldham, Mikaela Neal, Anthony Saviola, Christy S Niemeyer, Evgenia Dobrinskikh, Kimberley D Bruce
Despite Alzheimer's disease (AD) disproportionately affecting women, the mechanisms remain elusive. In AD, microglia undergo 'metabolic reprogramming', which contributes to microglial dysfunction and AD pathology. However, how sex and age contribute to metabolic reprogramming in microglia is understudied. Here, we use metabolic imaging, transcriptomics, and metabolic assays to probe age-and sex-associated changes in brain and microglial metabolism. Glycolytic and oxidative metabolism in the whole brain was determined using Fluorescence Lifetime Imaging Microscopy (FLIM)...
January 18, 2024: Brain Research
https://read.qxmd.com/read/38198855/timely-connections-apoe4-aging-and-alzheimer-s
#23
JOURNAL ARTICLE
Qingyun Li
How do APOE4 and aging, two of the strongest risk factors for late-onset Alzheimer's disease (AD), promote disease progression? In this issue of Immunity, Millet et al. examine microglia in AD mice bearing different APOE alleles at distinct ages and identify a conserved exhausted-like microglial state enriched in very elderly and APOE4 AD brains.
January 9, 2024: Immunity
https://read.qxmd.com/read/38191720/cell-type-specific-roles-of-apoe4-in-alzheimer-disease
#24
REVIEW
Jessica Blumenfeld, Oscar Yip, Min Joo Kim, Yadong Huang
The ɛ4 allele of the apolipoprotein E gene (APOE), which translates to the APOE4 isoform, is the strongest genetic risk factor for late-onset Alzheimer disease (AD). Within the CNS, APOE is produced by a variety of cell types under different conditions, posing a challenge for studying its roles in AD pathogenesis. However, through powerful advances in research tools and the use of novel cell culture and animal models, researchers have recently begun to study the roles of APOE4 in AD in a cell type-specific manner and at a deeper and more mechanistic level than ever before...
January 8, 2024: Nature Reviews. Neuroscience
https://read.qxmd.com/read/38178159/ipsc-derived-psen2-n141i-astrocytes-and-microglia-exhibit-a-primed-inflammatory-phenotype
#25
JOURNAL ARTICLE
Michael A Sullivan, Samuel D Lane, André D J McKenzie, Sarah R Ball, Margaret Sunde, G Gregory Neely, Cesar L Moreno, Alexandra Maximova, Eryn L Werry, Michael Kassiou
BACKGROUND: Widescale evidence points to the involvement of glia and immune pathways in the progression of Alzheimer's disease (AD). AD-associated iPSC-derived glial cells show a diverse range of AD-related phenotypic states encompassing cytokine/chemokine release, phagocytosis and morphological profiles, but to date studies are limited to cells derived from PSEN1, APOE and APP mutations or sporadic patients. The aim of the current study was to successfully differentiate iPSC-derived microglia and astrocytes from patients harbouring an AD-causative PSEN2 (N141I) mutation and characterise the inflammatory and morphological profile of these cells...
January 4, 2024: Journal of Neuroinflammation
https://read.qxmd.com/read/38172904/proteo-genomics-of-soluble-trem2-in-cerebrospinal-fluid-provides-novel-insights-and-identifies-novel-modulators-for-alzheimer-s-disease
#26
JOURNAL ARTICLE
Lihua Wang, Niko-Petteri Nykänen, Daniel Western, Priyanka Gorijala, Jigyasha Timsina, Fuhai Li, Zhaohua Wang, Muhammad Ali, Chengran Yang, Menghan Liu, William Brock, Marta Marquié, Mercè Boada, Ignacio Alvarez, Miquel Aguilar, Pau Pastor, Agustín Ruiz, Raquel Puerta, Adelina Orellana, Jarod Rutledge, Hamilton Oh, Michael D Greicius, Yann Le Guen, Richard J Perrin, Tony Wyss-Coray, Angela Jefferson, Timothy J Hohman, Neill Graff-Radford, Hiroshi Mori, Alison Goate, Johannes Levin, Yun Ju Sung, Carlos Cruchaga
Triggering receptor expressed on myeloid cells 2 (TREM2) plays a critical role in microglial activation, survival, and apoptosis, as well as in Alzheimer's disease (AD) pathogenesis. We previously reported the MS4A locus as a key modulator for soluble TREM2 (sTREM2) in cerebrospinal fluid (CSF). To identify additional novel genetic modifiers of sTREM2, we performed the largest genome-wide association study (GWAS) and identified four loci for CSF sTREM2 in 3,350 individuals of European ancestry. Through multi-ethnic fine mapping, we identified two independent missense variants (p...
January 3, 2024: Molecular Neurodegeneration
https://read.qxmd.com/read/38159571/an-exhausted-like-microglial-population-accumulates-in-aged-and-apoe4-genotype-alzheimer-s-brains
#27
JOURNAL ARTICLE
Alon Millet, Jose Henrique Ledo, Sohail F Tavazoie
The dominant risk factors for late-onset Alzheimer's disease (AD) are advanced age and the APOE4 genetic variant. To examine how these factors alter neuroimmune function, we generated an integrative, longitudinal single-cell atlas of brain immune cells in AD model mice bearing the three common human APOE alleles. Transcriptomic and chromatin accessibility analyses identified a reactive microglial population defined by the concomitant expression of inflammatory signals and cell-intrinsic stress markers whose frequency increased with age and APOE4 burden...
January 9, 2024: Immunity
https://read.qxmd.com/read/38115077/microglial-apoe4-more-is-less-and-less-is-more
#28
EDITORIAL
Ghazaleh Eskandari-Sedighi, Mathew Blurton-Jones
Apolipoprotein E (APOE) is the single greatest genetic risk factor for late onset Alzheimer's disease (AD). Yet, the cell-specific effects of APOE on microglia function have remained unclear. Fortunately, two comprehensive new studies published in the latest issue of Nature Immunology have employed complementary gain-of-function and loss-of-function approaches to provide critical new insight into the impact of microglial APOE on AD pathogenesis.
December 19, 2023: Molecular Neurodegeneration
https://read.qxmd.com/read/38076915/altered-metabolism-and-dam-signatures-in-female-brains-and-microglia-with-aging
#29
Nicholas R W Cleland, Garrett J Potter, Courtney Buck, Daphne Quang, Dean Oldham, Mikaela Neal, Anthony Saviola, Christy S Niemeyer, Evgenia Dobrinskikh, Kimberley D Bruce
Despite Alzheimer's disease (AD) disproportionately affecting women, the mechanisms remain elusive. In AD, microglia undergo 'metabolic reprogramming', which contributes to microglial dysfunction and AD pathology. However, how sex and age contribute to metabolic reprogramming in microglia is understudied. Here, we use metabolic imaging, transcriptomics, and metabolic assays to probe age-and sex-associated changes in brain and microglial metabolism. Glycolytic and oxidative metabolism in the whole brain was determined using Fluorescence Lifetime Imaging Microscopy (FLIM)...
November 30, 2023: bioRxiv
https://read.qxmd.com/read/38076822/altered-glia-neuron-communication-in-alzheimer-s-disease-affects-wnt-p53-and-nfkb-signaling-determined-by-snrna-seq
#30
Tabea M Soelter, Timothy C Howton, Amanda D Clark, Vishal H Oza, Brittany N Lasseigne
BACKGROUND: Alzheimer's disease is the most common cause of dementia and is characterized by amyloid-β plaques, tau neurofibrillary tangles, and neuronal loss. Although neuronal loss is a primary hallmark of Alzheimer's disease, it is known that non-neuronal cell populations are ultimately responsible for maintaining brain homeostasis and neuronal health through neuron-glia and glial cell crosstalk. Many signaling pathways have been proposed to be dysregulated in Alzheimer's disease, including WNT, TGFβ, p53, mTOR, NFkB, and Pi3k/Akt signaling...
December 1, 2023: bioRxiv
https://read.qxmd.com/read/38042110/trem2-regulates-microglial-lipid-droplet-formation-and-represses-post-ischemic-brain-injury
#31
JOURNAL ARTICLE
Wei Wei, Lin Zhang, Wenqiang Xin, Yongli Pan, Lars Tatenhorst, Zhongnan Hao, Stefan T Gerner, Sabine Huber, Martin Juenemann, Marius Butz, Hagen B Huttner, Mathias Bähr, Dirk Fitzner, Feng Jia, Thorsten R Doeppner
Triggering receptor expressed on myeloid cells 2 (TREM2) is a transmembrane receptor protein predominantly expressed in microglia within the central nervous system (CNS). TREM2 regulates multiple microglial functions, including lipid metabolism, immune reaction, inflammation, and microglial phagocytosis. Recent studies have found that TREM2 is highly expressed in activated microglia after ischemic stroke. However, the role of TREM2 in the pathologic response after stroke remains unclear. Herein, TREM2-deficient microglia exhibit an impaired phagocytosis rate and cholesteryl ester (CE) accumulation, leading to lipid droplet formation and upregulation of Perilipin-2 (PLIN2) expression after hypoxia...
December 1, 2023: Biomedicine & Pharmacotherapy
https://read.qxmd.com/read/38014339/microglia-depletion-reduces-human-neuronal-apoe4-driven-pathologies-in-a-chimeric-alzheimer-s-disease-model
#32
Antara Rao, Nuo Chen, Min Joo Kim, Jessica Blumenfeld, Oscar Yip, Yanxia Hao, Zherui Liang, Maxine R Nelson, Nicole Koutsodendris, Brian Grone, Leo Ding, Seo Yeon Yoon, Patrick Arriola, Yadong Huang
UNLABELLED: Despite strong evidence supporting the involvement of both apolipoprotein E4 (APOE4) and microglia in Alzheimer's Disease (AD) pathogenesis, the effects of microglia on neuronal APOE4-driven AD pathogenesis remain elusive. Here, we examined such effects utilizing microglial depletion in a chimeric model with human neurons in mouse hippocampus. Specifically, we transplanted homozygous APOE4, isogenic APOE3, and APOE-knockout (APOE-KO) induced pluripotent stem cell (iPSC)-derived human neurons into the hippocampus of human APOE3 or APOE4 knock-in mice, and depleted microglia in half the chimeric mice...
November 14, 2023: bioRxiv
https://read.qxmd.com/read/38006963/apoe-mimic-peptide-cog1410-reduces-a%C3%AE-deposition-and-improves-cognitive-function-by-inducing-the-transformation-of-a1-a2-reactive-astrocytes-and-increasing-the-bdnf-concentration-in-brain-of-app-ps1-double-transgenic-mice
#33
JOURNAL ARTICLE
Yue Qiao, Hang Liu, Chaoying He, Ying Ma
The main clinical manifestation of Alzheimer's disease is progressive cognitive decline, and its pathological features are β-amyloid (Aβ) deposition, neurofibrillary tangles, synaptic dysfunction and neuron death. Neuroinflammation is an important reason for the occurrence and development of AD, which is mainly manifested by the accumulation of activated microglia and reactive astrocytes. Apolipoprotein E (ApoE) is one of the most important apolipoprotein in the brain, which is related to metabolism, aggregation and toxicity of Aβ...
January 26, 2024: Neuroscience
https://read.qxmd.com/read/38001994/exploring-the-disease-associated-microglia-state-in-amyotrophic-lateral-sclerosis
#34
JOURNAL ARTICLE
Carlota Jauregui, Idoia Blanco-Luquin, Mónica Macías, Miren Roldan, Cristina Caballero, Inma Pagola, Maite Mendioroz, Ivonne Jericó
BACKGROUND: Neuroinflammation, and specifically microglia, plays an important but not-yet well-understood role in the pathophysiology of amyotrophic lateral sclerosis (ALS), constituting a potential therapeutic target for the disease. Recent studies have described the involvement of different microglial transcriptional patterns throughout neurodegenerative processes, identifying a new state of microglia: disease-associated microglia (DAM). The aim of this study is to investigate expression patterns of microglial-related genes in ALS spinal cord...
November 8, 2023: Biomedicines
https://read.qxmd.com/read/37995685/amelioration-of-tau-and-apoe4-linked-glial-lipid-accumulation-and-neurodegeneration-with-an-lxr-agonist
#35
JOURNAL ARTICLE
Alexandra Litvinchuk, Jung H Suh, Jing L Guo, Karin Lin, Sonnet S Davis, Nga Bien-Ly, Eric Tycksen, G Travis Tabor, Javier Remolina Serrano, Melissa Manis, Xin Bao, Choonghee Lee, Megan Bosch, Enmanuel J Perez, Carla M Yuede, Anil G Cashikar, Jason D Ulrich, Gilbert Di Paolo, David M Holtzman
Apolipoprotein E (APOE) is a strong genetic risk factor for late-onset Alzheimer's disease (LOAD). APOE4 increases and APOE2 decreases risk relative to APOE3. In the P301S mouse model of tauopathy, ApoE4 increases tau pathology and neurodegeneration when compared with ApoE3 or the absence of ApoE. However, the role of ApoE isoforms and lipid metabolism in contributing to tau-mediated degeneration is unknown. We demonstrate that in P301S tau mice, ApoE4 strongly promotes glial lipid accumulation and perturbations in cholesterol metabolism and lysosomal function...
November 16, 2023: Neuron
https://read.qxmd.com/read/37967653/factors-affecting-the-gabaergic-synapse-function-in-alzheimer-s-disease-focus-on-micrornas
#36
REVIEW
Jazmin Rivera, Bhupender Sharma, Melissa M Torres, Subodh Kumar
Alzheimer's disease (AD) is a progressive neurological disease characterized by the loss of cognitive function, confusion, and memory deficit. Accumulation of abnormal proteins, amyloid beta (Aß), and phosphorylated Tau (p-tau) forms plaques and tangles that deteriorate synapse function, resulting in neurodegeneration and cognitive decline in AD. The human brain is composed of different types of neurons and/or synapses that are functionally defective in AD. The GABAergic synapse, the most abundant inhibitory neuron in the human brain was found to be dysfunctional in AD and contributes to disrupting neurological function...
December 2023: Ageing Research Reviews
https://read.qxmd.com/read/37944881/the-chemotherapeutic-agent-doxorubicin-induces-brain-senescence-with-modulation-by-apoe-genotype
#37
JOURNAL ARTICLE
Tamar Demby, Phillip S Gross, Jeanne Mandelblatt, Jeffrey K Huang, G William Rebeck
Many cancer patients experience serious cognitive problems related to their treatment, which can greatly affect their quality of life. The molecular mechanisms of this cancer chemotherapy-induced cognitive impairment (CICI) are unknown, thus slowing the development of preventative approaches. We hypothesized that cancer chemotherapies could induce cellular senescence in the brain, creating a pro-inflammatory environment and damaging normal brain communication. We tested this hypothesis using the common chemotherapeutic agent doxorubicin in two independent mouse models...
November 7, 2023: Experimental Neurology
https://read.qxmd.com/read/37894967/side-chain-immune-oxysterols-induce-neuroinflammation-by-activating-microglia
#38
JOURNAL ARTICLE
Yonghae Son, In-Jun Yeo, Jin-Tae Hong, Seong-Kug Eo, Dongjun Lee, Koanhoi Kim
In individuals with Alzheimer's disease, the brain exhibits elevated levels of IL-1β and oxygenated cholesterol molecules (oxysterols). This study aimed to investigate the effects of side-chain oxysterols on IL-1β expression using HMC3 microglial cells and ApoE-deficient mice. Treatment of HMC3 cells with 25-hydroxycholesterol (25OHChol) and 27-hydroxycholesterol (27OHChol) led to increased IL-1β expression at the transcript and protein levels. Additionally, these oxysterols upregulated the surface expression of MHC II, a marker of activated microglia...
October 18, 2023: International Journal of Molecular Sciences
https://read.qxmd.com/read/37872317/apoe-set-the-microglia-free
#39
JOURNAL ARTICLE
Emile Wogram, Marco Prinz
No abstract text is available yet for this article.
November 2023: Nature Immunology
https://read.qxmd.com/read/37858252/a-small-molecule-tlr4-antagonist-reduced-neuroinflammation-in-female-e4fad-mice
#40
JOURNAL ARTICLE
Deebika Balu, Ana C Valencia-Olvera, Austin Nguyen, Mehul Patnam, Jason York, Francesco Peri, Frank Neumann, Mary Jo LaDu, Leon M Tai
BACKGROUND: APOE genotype is the greatest genetic risk factor for sporadic Alzheimer's disease (AD). APOE4 increases AD risk up to 12-fold compared to APOE3, an effect that is greater in females. Evidence suggests that one-way APOE could modulate AD risk and progression through neuroinflammation. Indeed, APOE4 is associated with higher glial activation and cytokine levels in AD patients and mice. Therefore, identifying pathways that contribute to APOE4-associated neuroinflammation is an important approach for understanding and treating AD...
October 19, 2023: Alzheimer's Research & Therapy
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