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Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria

BACKGROUND: The role of intracellular radical oxygen species (ROS) in pathogenesis of cerebral malaria (CM) remains incompletely understood. METHODS AND FINDINGS: We undertook testing Tempol—a superoxide dismutase (SOD) mimetic and pleiotropic intracellular antioxidant—in cells relevant to malaria p...

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Autores principales: Francischetti, Ivo M. B., Gordon, Emile, Bizzarro, Bruna, Gera, Nidhi, Andrade, Bruno B., Oliveira, Fabiano, Ma, Dongying, Assumpção, Teresa C. F., Ribeiro, José M. C., Pena, Mirna, Qi, Chen-Feng, Diouf, Ababacar, Moretz, Samuel E., Long, Carole A., Ackerman, Hans C., Pierce, Susan K., Sá-Nunes, Anderson, Waisberg, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3938406/
https://www.ncbi.nlm.nih.gov/pubmed/24586264
http://dx.doi.org/10.1371/journal.pone.0087140
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author Francischetti, Ivo M. B.
Gordon, Emile
Bizzarro, Bruna
Gera, Nidhi
Andrade, Bruno B.
Oliveira, Fabiano
Ma, Dongying
Assumpção, Teresa C. F.
Ribeiro, José M. C.
Pena, Mirna
Qi, Chen-Feng
Diouf, Ababacar
Moretz, Samuel E.
Long, Carole A.
Ackerman, Hans C.
Pierce, Susan K.
Sá-Nunes, Anderson
Waisberg, Michael
author_facet Francischetti, Ivo M. B.
Gordon, Emile
Bizzarro, Bruna
Gera, Nidhi
Andrade, Bruno B.
Oliveira, Fabiano
Ma, Dongying
Assumpção, Teresa C. F.
Ribeiro, José M. C.
Pena, Mirna
Qi, Chen-Feng
Diouf, Ababacar
Moretz, Samuel E.
Long, Carole A.
Ackerman, Hans C.
Pierce, Susan K.
Sá-Nunes, Anderson
Waisberg, Michael
author_sort Francischetti, Ivo M. B.
collection PubMed
description BACKGROUND: The role of intracellular radical oxygen species (ROS) in pathogenesis of cerebral malaria (CM) remains incompletely understood. METHODS AND FINDINGS: We undertook testing Tempol—a superoxide dismutase (SOD) mimetic and pleiotropic intracellular antioxidant—in cells relevant to malaria pathogenesis in the context of coagulation and inflammation. Tempol was also tested in a murine model of CM induced by Plasmodium berghei Anka infection. Tempol was found to prevent transcription and functional expression of procoagulant tissue factor in endothelial cells (ECs) stimulated by lipopolysaccharide (LPS). This effect was accompanied by inhibition of IL-6, IL-8, and monocyte chemoattractant protein (MCP-1) production. Tempol also attenuated platelet aggregation and human promyelocytic leukemia HL60 cells oxidative burst. In dendritic cells, Tempol inhibited LPS-induced production of TNF-α, IL-6, and IL-12p70, downregulated expression of co-stimulatory molecules, and prevented antigen-dependent lymphocyte proliferation. Notably, Tempol (20 mg/kg) partially increased the survival of mice with CM. Mechanistically, treated mice had lowered plasma levels of MCP-1, suggesting that Tempol downmodulates EC function and vascular inflammation. Tempol also diminished blood brain barrier permeability associated with CM when started at day 4 post infection but not at day 1, suggesting that ROS production is tightly regulated. Other antioxidants—such as α-phenyl N-tertiary-butyl nitrone (PBN; a spin trap), MnTe-2-PyP and MnTBAP (Mn-phorphyrin), Mitoquinone (MitoQ) and Mitotempo (mitochondrial antioxidants), M30 (an iron chelator), and epigallocatechin gallate (EGCG; polyphenol from green tea) did not improve survival. By contrast, these compounds (except PBN) inhibited Plasmodium falciparum growth in culture with different IC(50s). Knockout mice for SOD1 or phagocyte nicotinamide adenine dinucleotide phosphate (NADPH) oxidase (gp91(phox–/–)) or mice treated with inhibitors of SOD (diethyldithiocarbamate) or NADPH oxidase (diphenyleneiodonium) did not show protection or exacerbation for CM. CONCLUSION: Results with Tempol suggest that intracellular ROS contribute, in part, to CM pathogenesis. Therapeutic targeting of intracellular ROS in CM is discussed.
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spelling pubmed-39384062014-03-04 Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria Francischetti, Ivo M. B. Gordon, Emile Bizzarro, Bruna Gera, Nidhi Andrade, Bruno B. Oliveira, Fabiano Ma, Dongying Assumpção, Teresa C. F. Ribeiro, José M. C. Pena, Mirna Qi, Chen-Feng Diouf, Ababacar Moretz, Samuel E. Long, Carole A. Ackerman, Hans C. Pierce, Susan K. Sá-Nunes, Anderson Waisberg, Michael PLoS One Research Article BACKGROUND: The role of intracellular radical oxygen species (ROS) in pathogenesis of cerebral malaria (CM) remains incompletely understood. METHODS AND FINDINGS: We undertook testing Tempol—a superoxide dismutase (SOD) mimetic and pleiotropic intracellular antioxidant—in cells relevant to malaria pathogenesis in the context of coagulation and inflammation. Tempol was also tested in a murine model of CM induced by Plasmodium berghei Anka infection. Tempol was found to prevent transcription and functional expression of procoagulant tissue factor in endothelial cells (ECs) stimulated by lipopolysaccharide (LPS). This effect was accompanied by inhibition of IL-6, IL-8, and monocyte chemoattractant protein (MCP-1) production. Tempol also attenuated platelet aggregation and human promyelocytic leukemia HL60 cells oxidative burst. In dendritic cells, Tempol inhibited LPS-induced production of TNF-α, IL-6, and IL-12p70, downregulated expression of co-stimulatory molecules, and prevented antigen-dependent lymphocyte proliferation. Notably, Tempol (20 mg/kg) partially increased the survival of mice with CM. Mechanistically, treated mice had lowered plasma levels of MCP-1, suggesting that Tempol downmodulates EC function and vascular inflammation. Tempol also diminished blood brain barrier permeability associated with CM when started at day 4 post infection but not at day 1, suggesting that ROS production is tightly regulated. Other antioxidants—such as α-phenyl N-tertiary-butyl nitrone (PBN; a spin trap), MnTe-2-PyP and MnTBAP (Mn-phorphyrin), Mitoquinone (MitoQ) and Mitotempo (mitochondrial antioxidants), M30 (an iron chelator), and epigallocatechin gallate (EGCG; polyphenol from green tea) did not improve survival. By contrast, these compounds (except PBN) inhibited Plasmodium falciparum growth in culture with different IC(50s). Knockout mice for SOD1 or phagocyte nicotinamide adenine dinucleotide phosphate (NADPH) oxidase (gp91(phox–/–)) or mice treated with inhibitors of SOD (diethyldithiocarbamate) or NADPH oxidase (diphenyleneiodonium) did not show protection or exacerbation for CM. CONCLUSION: Results with Tempol suggest that intracellular ROS contribute, in part, to CM pathogenesis. Therapeutic targeting of intracellular ROS in CM is discussed. Public Library of Science 2014-02-28 /pmc/articles/PMC3938406/ /pubmed/24586264 http://dx.doi.org/10.1371/journal.pone.0087140 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Francischetti, Ivo M. B.
Gordon, Emile
Bizzarro, Bruna
Gera, Nidhi
Andrade, Bruno B.
Oliveira, Fabiano
Ma, Dongying
Assumpção, Teresa C. F.
Ribeiro, José M. C.
Pena, Mirna
Qi, Chen-Feng
Diouf, Ababacar
Moretz, Samuel E.
Long, Carole A.
Ackerman, Hans C.
Pierce, Susan K.
Sá-Nunes, Anderson
Waisberg, Michael
Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria
title Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria
title_full Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria
title_fullStr Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria
title_full_unstemmed Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria
title_short Tempol, an Intracellular Antioxidant, Inhibits Tissue Factor Expression, Attenuates Dendritic Cell Function, and Is Partially Protective in a Murine Model of Cerebral Malaria
title_sort tempol, an intracellular antioxidant, inhibits tissue factor expression, attenuates dendritic cell function, and is partially protective in a murine model of cerebral malaria
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3938406/
https://www.ncbi.nlm.nih.gov/pubmed/24586264
http://dx.doi.org/10.1371/journal.pone.0087140
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