Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.

Cytokines such as TNFα can polarize microglia/macrophages into different neuroinflammatory types. Skewing of the phenotype towards a cytotoxic state is thought to impair phagocytosis and has been described in Alzheimer's Disease (AD). Neuroinflammation can be perpetuated by a cycle of increasin...

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Main Authors: S Prasad Gabbita, Ming F Johnson, Naomi Kobritz, Pirooz Eslami, Aleksandra Poteshkina, Sridhar Varadarajan, John Turman, Frank Zemlan, Marni E Harris-White
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4593589?pdf=render
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spelling doaj-fd961e848a2a41678b775a2c63ae7d6b2020-11-25T02:08:05ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011010e013730510.1371/journal.pone.0137305Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.S Prasad GabbitaMing F JohnsonNaomi KobritzPirooz EslamiAleksandra PoteshkinaSridhar VaradarajanJohn TurmanFrank ZemlanMarni E Harris-WhiteCytokines such as TNFα can polarize microglia/macrophages into different neuroinflammatory types. Skewing of the phenotype towards a cytotoxic state is thought to impair phagocytosis and has been described in Alzheimer's Disease (AD). Neuroinflammation can be perpetuated by a cycle of increasing cytokine production and maintenance of a polarized activation state that contributes to AD progression. In this study, 3xTgAD mice, age 6 months, were treated orally with 3 doses of the TNFα modulating compound isoindolin-1,3 dithione (IDT) for 10 months. We demonstrate that IDT is a TNFα modulating compound both in vitro and in vivo. Following long-term IDT administration, mice were assessed for learning & memory and tissue and serum were collected for analysis. Results demonstrate that IDT is safe for long-term treatment and significantly improves learning and memory in the 3xTgAD mouse model. IDT significantly reduced paired helical filament tau and fibrillar amyloid accumulation. Flow cytometry of brain cell populations revealed that IDT increased the infiltrating neutrophil population while reducing TNFα expression in this population. IDT is a safe and effective TNFα and innate immune system modulator. Thus small molecule, orally bioavailable modulators are promising therapeutics for Alzheimer's disease.http://europepmc.org/articles/PMC4593589?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author S Prasad Gabbita
Ming F Johnson
Naomi Kobritz
Pirooz Eslami
Aleksandra Poteshkina
Sridhar Varadarajan
John Turman
Frank Zemlan
Marni E Harris-White
spellingShingle S Prasad Gabbita
Ming F Johnson
Naomi Kobritz
Pirooz Eslami
Aleksandra Poteshkina
Sridhar Varadarajan
John Turman
Frank Zemlan
Marni E Harris-White
Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.
PLoS ONE
author_facet S Prasad Gabbita
Ming F Johnson
Naomi Kobritz
Pirooz Eslami
Aleksandra Poteshkina
Sridhar Varadarajan
John Turman
Frank Zemlan
Marni E Harris-White
author_sort S Prasad Gabbita
title Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.
title_short Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.
title_full Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.
title_fullStr Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.
title_full_unstemmed Oral TNFα Modulation Alters Neutrophil Infiltration, Improves Cognition and Diminishes Tau and Amyloid Pathology in the 3xTgAD Mouse Model.
title_sort oral tnfα modulation alters neutrophil infiltration, improves cognition and diminishes tau and amyloid pathology in the 3xtgad mouse model.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description Cytokines such as TNFα can polarize microglia/macrophages into different neuroinflammatory types. Skewing of the phenotype towards a cytotoxic state is thought to impair phagocytosis and has been described in Alzheimer's Disease (AD). Neuroinflammation can be perpetuated by a cycle of increasing cytokine production and maintenance of a polarized activation state that contributes to AD progression. In this study, 3xTgAD mice, age 6 months, were treated orally with 3 doses of the TNFα modulating compound isoindolin-1,3 dithione (IDT) for 10 months. We demonstrate that IDT is a TNFα modulating compound both in vitro and in vivo. Following long-term IDT administration, mice were assessed for learning & memory and tissue and serum were collected for analysis. Results demonstrate that IDT is safe for long-term treatment and significantly improves learning and memory in the 3xTgAD mouse model. IDT significantly reduced paired helical filament tau and fibrillar amyloid accumulation. Flow cytometry of brain cell populations revealed that IDT increased the infiltrating neutrophil population while reducing TNFα expression in this population. IDT is a safe and effective TNFα and innate immune system modulator. Thus small molecule, orally bioavailable modulators are promising therapeutics for Alzheimer's disease.
url http://europepmc.org/articles/PMC4593589?pdf=render
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