Cargando…

Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease

During the course of Chagas disease, infectious forms of Trypanosoma cruzi are occasionally liberated from parasitized heart cells. Studies performed with tissue culture trypomastigotes (TCTs, Dm28c strain) demonstrated that these parasites evoke neutrophil/CXCR2-dependent microvascular leakage by a...

Descripción completa

Detalles Bibliográficos
Autores principales: Nascimento, Clarissa R., Andrade, Daniele, Carvalho-Pinto, Carla Eponina, Serra, Rafaela Rangel, Vellasco, Lucas, Brasil, Guilherme, Ramos-Junior, Erivan Schnaider, da Mota, Julia Barbalho, Almeida, Larissa Nogueira, Andrade, Marcus V., Correia Soeiro, Maria de Nazaré, Juliano, Luiz, Alvarenga, Patrícia Hessab, Oliveira, Ana Carolina, Sicuro, Fernando Lencastre, de Carvalho, Antônio C. Campos, Svensjö, Erik, Scharfstein, Julio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5539176/
https://www.ncbi.nlm.nih.gov/pubmed/28824610
http://dx.doi.org/10.3389/fimmu.2017.00840
_version_ 1783254434675949568
author Nascimento, Clarissa R.
Andrade, Daniele
Carvalho-Pinto, Carla Eponina
Serra, Rafaela Rangel
Vellasco, Lucas
Brasil, Guilherme
Ramos-Junior, Erivan Schnaider
da Mota, Julia Barbalho
Almeida, Larissa Nogueira
Andrade, Marcus V.
Correia Soeiro, Maria de Nazaré
Juliano, Luiz
Alvarenga, Patrícia Hessab
Oliveira, Ana Carolina
Sicuro, Fernando Lencastre
de Carvalho, Antônio C. Campos
Svensjö, Erik
Scharfstein, Julio
author_facet Nascimento, Clarissa R.
Andrade, Daniele
Carvalho-Pinto, Carla Eponina
Serra, Rafaela Rangel
Vellasco, Lucas
Brasil, Guilherme
Ramos-Junior, Erivan Schnaider
da Mota, Julia Barbalho
Almeida, Larissa Nogueira
Andrade, Marcus V.
Correia Soeiro, Maria de Nazaré
Juliano, Luiz
Alvarenga, Patrícia Hessab
Oliveira, Ana Carolina
Sicuro, Fernando Lencastre
de Carvalho, Antônio C. Campos
Svensjö, Erik
Scharfstein, Julio
author_sort Nascimento, Clarissa R.
collection PubMed
description During the course of Chagas disease, infectious forms of Trypanosoma cruzi are occasionally liberated from parasitized heart cells. Studies performed with tissue culture trypomastigotes (TCTs, Dm28c strain) demonstrated that these parasites evoke neutrophil/CXCR2-dependent microvascular leakage by activating innate sentinel cells via toll-like receptor 2 (TLR2). Upon plasma extravasation, proteolytically derived kinins and C5a stimulate immunoprotective Th1 responses via cross-talk between bradykinin B2 receptors (B2Rs) and C5aR. Awareness that TCTs invade cardiovascular cells in vitro via interdependent activation of B2R and endothelin receptors [endothelin A receptor (ET(A)R)/endothelin B receptor (ET(B)R)] led us to hypothesize that T. cruzi might reciprocally benefit from the formation of infection-associated edema via activation of kallikrein–kinin system (KKS). Using intravital microscopy, here we first examined the functional interplay between mast cells (MCs) and the KKS by topically exposing the hamster cheek pouch (HCP) tissues to dextran sulfate (DXS), a potent “contact” activator of the KKS. Surprisingly, although DXS was inert for at least 30 min, a subtle MC-driven leakage resulted in factor XII (FXII)-dependent activation of the KKS, which then amplified inflammation via generation of bradykinin (BK). Guided by this mechanistic insight, we next exposed TCTs to “leaky” HCP—forged by low dose histamine application—and found that the proinflammatory phenotype of TCTs was boosted by BK generated via the MC/KKS pathway. Measurements of footpad edema in MC-deficient mice linked TCT-evoked inflammation to MC degranulation (upstream) and FXII-mediated generation of BK (downstream). We then inoculated TCTs intracardiacally in mice and found a striking decrease of parasite DNA (quantitative polymerase chain reaction; 3 d.p.i.) in the heart of MC-deficient mutant mice. Moreover, the intracardiac parasite load was significantly reduced in WT mice pretreated with (i) cromoglycate (MC stabilizer) (ii) infestin-4, a specific inhibitor of FXIIa (iii) HOE-140 (specific antagonist of B2R), and (iv) bosentan, a non-selective antagonist of ET(A)R/ET(B)R. Notably, histopathology of heart tissues from mice pretreated with these G protein-coupled receptors blockers revealed that myocarditis and heart fibrosis (30 d.p.i.) was markedly and redundantly attenuated. Collectively, our study suggests that inflammatory edema propagated via activation of the MC/KKS pathway fuels intracardiac parasitism by generating infection-stimulatory peptides (BK and endothelins) in the edematous heart tissues.
format Online
Article
Text
id pubmed-5539176
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-55391762017-08-18 Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease Nascimento, Clarissa R. Andrade, Daniele Carvalho-Pinto, Carla Eponina Serra, Rafaela Rangel Vellasco, Lucas Brasil, Guilherme Ramos-Junior, Erivan Schnaider da Mota, Julia Barbalho Almeida, Larissa Nogueira Andrade, Marcus V. Correia Soeiro, Maria de Nazaré Juliano, Luiz Alvarenga, Patrícia Hessab Oliveira, Ana Carolina Sicuro, Fernando Lencastre de Carvalho, Antônio C. Campos Svensjö, Erik Scharfstein, Julio Front Immunol Immunology During the course of Chagas disease, infectious forms of Trypanosoma cruzi are occasionally liberated from parasitized heart cells. Studies performed with tissue culture trypomastigotes (TCTs, Dm28c strain) demonstrated that these parasites evoke neutrophil/CXCR2-dependent microvascular leakage by activating innate sentinel cells via toll-like receptor 2 (TLR2). Upon plasma extravasation, proteolytically derived kinins and C5a stimulate immunoprotective Th1 responses via cross-talk between bradykinin B2 receptors (B2Rs) and C5aR. Awareness that TCTs invade cardiovascular cells in vitro via interdependent activation of B2R and endothelin receptors [endothelin A receptor (ET(A)R)/endothelin B receptor (ET(B)R)] led us to hypothesize that T. cruzi might reciprocally benefit from the formation of infection-associated edema via activation of kallikrein–kinin system (KKS). Using intravital microscopy, here we first examined the functional interplay between mast cells (MCs) and the KKS by topically exposing the hamster cheek pouch (HCP) tissues to dextran sulfate (DXS), a potent “contact” activator of the KKS. Surprisingly, although DXS was inert for at least 30 min, a subtle MC-driven leakage resulted in factor XII (FXII)-dependent activation of the KKS, which then amplified inflammation via generation of bradykinin (BK). Guided by this mechanistic insight, we next exposed TCTs to “leaky” HCP—forged by low dose histamine application—and found that the proinflammatory phenotype of TCTs was boosted by BK generated via the MC/KKS pathway. Measurements of footpad edema in MC-deficient mice linked TCT-evoked inflammation to MC degranulation (upstream) and FXII-mediated generation of BK (downstream). We then inoculated TCTs intracardiacally in mice and found a striking decrease of parasite DNA (quantitative polymerase chain reaction; 3 d.p.i.) in the heart of MC-deficient mutant mice. Moreover, the intracardiac parasite load was significantly reduced in WT mice pretreated with (i) cromoglycate (MC stabilizer) (ii) infestin-4, a specific inhibitor of FXIIa (iii) HOE-140 (specific antagonist of B2R), and (iv) bosentan, a non-selective antagonist of ET(A)R/ET(B)R. Notably, histopathology of heart tissues from mice pretreated with these G protein-coupled receptors blockers revealed that myocarditis and heart fibrosis (30 d.p.i.) was markedly and redundantly attenuated. Collectively, our study suggests that inflammatory edema propagated via activation of the MC/KKS pathway fuels intracardiac parasitism by generating infection-stimulatory peptides (BK and endothelins) in the edematous heart tissues. Frontiers Media S.A. 2017-08-02 /pmc/articles/PMC5539176/ /pubmed/28824610 http://dx.doi.org/10.3389/fimmu.2017.00840 Text en Copyright © 2017 Nascimento, Andrade, Carvalho-Pinto, Serra, Vellasco, Brasil, Ramos-Junior, da Mota, Almeida, Andrade, Correia Soeiro, Juliano, Alvarenga, Oliveira, Sicuro, de Carvalho, Svensjö and Scharfstein. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Nascimento, Clarissa R.
Andrade, Daniele
Carvalho-Pinto, Carla Eponina
Serra, Rafaela Rangel
Vellasco, Lucas
Brasil, Guilherme
Ramos-Junior, Erivan Schnaider
da Mota, Julia Barbalho
Almeida, Larissa Nogueira
Andrade, Marcus V.
Correia Soeiro, Maria de Nazaré
Juliano, Luiz
Alvarenga, Patrícia Hessab
Oliveira, Ana Carolina
Sicuro, Fernando Lencastre
de Carvalho, Antônio C. Campos
Svensjö, Erik
Scharfstein, Julio
Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease
title Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease
title_full Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease
title_fullStr Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease
title_full_unstemmed Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease
title_short Mast Cell Coupling to the Kallikrein–Kinin System Fuels Intracardiac Parasitism and Worsens Heart Pathology in Experimental Chagas Disease
title_sort mast cell coupling to the kallikrein–kinin system fuels intracardiac parasitism and worsens heart pathology in experimental chagas disease
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5539176/
https://www.ncbi.nlm.nih.gov/pubmed/28824610
http://dx.doi.org/10.3389/fimmu.2017.00840
work_keys_str_mv AT nascimentoclarissar mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT andradedaniele mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT carvalhopintocarlaeponina mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT serrarafaelarangel mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT vellascolucas mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT brasilguilherme mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT ramosjuniorerivanschnaider mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT damotajuliabarbalho mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT almeidalarissanogueira mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT andrademarcusv mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT correiasoeiromariadenazare mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT julianoluiz mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT alvarengapatriciahessab mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT oliveiraanacarolina mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT sicurofernandolencastre mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT decarvalhoantonioccampos mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT svensjoerik mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease
AT scharfsteinjulio mastcellcouplingtothekallikreinkininsystemfuelsintracardiacparasitismandworsensheartpathologyinexperimentalchagasdisease