Literature DB >> 26884167

The adaptive immune system restrains Alzheimer's disease pathogenesis by modulating microglial function.

Samuel E Marsh1, Edsel M Abud1, Anita Lakatos2, Alborz Karimzadeh3, Stephen T Yeung2, Hayk Davtyan4, Gianna M Fote1, Lydia Lau2, Jason G Weinger5, Thomas E Lane6, Matthew A Inlay3, Wayne W Poon2, Mathew Blurton-Jones7.   

Abstract

The innate immune system is strongly implicated in the pathogenesis of Alzheimer's disease (AD). In contrast, the role of adaptive immunity in AD remains largely unknown. However, numerous clinical trials are testing vaccination strategies for AD, suggesting that T and B cells play a pivotal role in this disease. To test the hypothesis that adaptive immunity influences AD pathogenesis, we generated an immune-deficient AD mouse model that lacks T, B, and natural killer (NK) cells. The resulting "Rag-5xfAD" mice exhibit a greater than twofold increase in β-amyloid (Aβ) pathology. Gene expression analysis of the brain implicates altered innate and adaptive immune pathways, including changes in cytokine/chemokine signaling and decreased Ig-mediated processes. Neuroinflammation is also greatly exacerbated in Rag-5xfAD mice as indicated by a shift in microglial phenotype, increased cytokine production, and reduced phagocytic capacity. In contrast, immune-intact 5xfAD mice exhibit elevated levels of nonamyloid reactive IgGs in association with microglia, and treatment of Rag-5xfAD mice or microglial cells with preimmune IgG enhances Aβ clearance. Last, we performed bone marrow transplantation studies in Rag-5xfAD mice, revealing that replacement of these missing adaptive immune populations can dramatically reduce AD pathology. Taken together, these data strongly suggest that adaptive immune cell populations play an important role in restraining AD pathology. In contrast, depletion of B cells and their appropriate activation by T cells leads to a loss of adaptive-innate immunity cross talk and accelerated disease progression.

Entities:  

Keywords:  Alzheimer’s; IgG; amyloid; inflammation; microglia

Mesh:

Substances:

Year:  2016        PMID: 26884167      PMCID: PMC4780638          DOI: 10.1073/pnas.1525466113

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  63 in total

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Journal:  Nat Rev Neurol       Date:  2015-07-21       Impact factor: 42.937

3.  IL-10 alters immunoproteostasis in APP mice, increasing plaque burden and worsening cognitive behavior.

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7.  Intracranial injection of Gammagard, a human IVIg, modulates the inflammatory response of the brain and lowers Aβ in APP/PS1 mice along a different time course than anti-Aβ antibodies.

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9.  Aging. Aging-induced type I interferon response at the choroid plexus negatively affects brain function.

Authors:  Kuti Baruch; Aleksandra Deczkowska; Eyal David; Joseph M Castellano; Omer Miller; Alexander Kertser; Tamara Berkutzki; Zohar Barnett-Itzhaki; Dana Bezalel; Tony Wyss-Coray; Ido Amit; Michal Schwartz
Journal:  Science       Date:  2014-08-21       Impact factor: 47.728

10.  Gene expression and functional annotation of human choroid plexus epithelium failure in Alzheimer's disease.

Authors:  Arthur A Bergen; Sovann Kaing; Jacoline B ten Brink; Theo G Gorgels; Sarah F Janssen
Journal:  BMC Genomics       Date:  2015-11-16       Impact factor: 3.969

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  121 in total

Review 1.  Potential importance of B cells in aging and aging-associated neurodegenerative diseases.

Authors:  Arya Biragyn; Maria Aliseychik; Evgeny Rogaev
Journal:  Semin Immunopathol       Date:  2017-01-12       Impact factor: 9.623

2.  Modulation of neuroinflammation and pathology in the 5XFAD mouse model of Alzheimer's disease using a biased and selective beta-1 adrenergic receptor partial agonist.

Authors:  Pooneh Memar Ardestani; Andrew K Evans; Bitna Yi; Tiffany Nguyen; Laurence Coutellier; Mehrdad Shamloo
Journal:  Neuropharmacology       Date:  2017-01-13       Impact factor: 5.250

Review 3.  Microglial priming in Alzheimer's disease.

Authors:  Jun-Wei Li; Yu Zong; Xi-Peng Cao; Lin Tan; Lan Tan
Journal:  Ann Transl Med       Date:  2018-05

Review 4.  [Neuroinflammation as motor of Alzheimer's disease].

Authors:  Sergio Castro-Gomez; Julius Binder; Michael T Heneka
Journal:  Nervenarzt       Date:  2019-09       Impact factor: 1.214

Review 5.  Harnessing Immunoproteostasis to Treat Neurodegenerative Disorders.

Authors:  Todd E Golde
Journal:  Neuron       Date:  2019-03-20       Impact factor: 17.173

Review 6.  Cardiolipin in Central Nervous System Physiology and Pathology.

Authors:  Caitlin B Pointer; Andis Klegeris
Journal:  Cell Mol Neurobiol       Date:  2016-12-30       Impact factor: 5.046

7.  iPSC-Derived Human Microglia-like Cells to Study Neurological Diseases.

Authors:  Edsel M Abud; Ricardo N Ramirez; Eric S Martinez; Luke M Healy; Cecilia H H Nguyen; Sean A Newman; Andriy V Yeromin; Vanessa M Scarfone; Samuel E Marsh; Cristhian Fimbres; Chad A Caraway; Gianna M Fote; Abdullah M Madany; Anshu Agrawal; Rakez Kayed; Karen H Gylys; Michael D Cahalan; Brian J Cummings; Jack P Antel; Ali Mortazavi; Monica J Carson; Wayne W Poon; Mathew Blurton-Jones
Journal:  Neuron       Date:  2017-04-19       Impact factor: 17.173

8.  Quantitative 3D In Silico Modeling (q3DISM) of Cerebral Amyloid-beta Phagocytosis in Rodent Models of Alzheimer's Disease.

Authors:  Marie-Victoire Guillot-Sestier; Tara M Weitz; Terrence Town
Journal:  J Vis Exp       Date:  2016-12-26       Impact factor: 1.355

9.  Development of a Chimeric Model to Study and Manipulate Human Microglia In Vivo.

Authors:  Jonathan Hasselmann; Morgan A Coburn; Whitney England; Dario X Figueroa Velez; Sepideh Kiani Shabestari; Christina H Tu; Amanda McQuade; Mahshad Kolahdouzan; Karla Echeverria; Christel Claes; Taylor Nakayama; Ricardo Azevedo; Nicole G Coufal; Claudia Z Han; Brian J Cummings; Hayk Davtyan; Christopher K Glass; Luke M Healy; Sunil P Gandhi; Robert C Spitale; Mathew Blurton-Jones
Journal:  Neuron       Date:  2019-07-30       Impact factor: 17.173

10.  Sex differences in the genetic architecture of obsessive-compulsive disorder.

Authors:  Ekaterina A Khramtsova; Raphael Heldman; Eske M Derks; Dongmei Yu; Lea K Davis; Barbara E Stranger
Journal:  Am J Med Genet B Neuropsychiatr Genet       Date:  2018-11-20       Impact factor: 3.568

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