Literature DB >> 11334935

The role of endothelin in the pathogenesis of Chagas' disease.

S B Petkova1, H Huang, S M Factor, R G Pestell, B Bouzahzah, L A Jelicks, L M Weiss, S A Douglas, M Wittner, H B Tanowitz.   

Abstract

Infection with Trypanosoma cruzi causes a generalised vasculitis of several vascular beds. This vasculopathy is manifested by vasospasm, reduced blood flow, focal ischaemia, platelet thrombi, increased platelet aggregation and elevated plasma levels of thromboxane A(2) and endothelin-1. In the myocardium of infected mice, myonecrosis and a vasculitis of the aorta, coronary artery, smaller myocardial vessels and the endocardial endothelium are observed. Immunohistochemistry studies employing anti-endothelin-1 antibody revealed increased expression of endothelin-1, most intense in the endocardial and vascular endothelium. Elevated levels of mRNA for prepro endothelin-1, endothelin converting enzyme and endothelin-1 were observed in the infected myocardium. When T. cruzi-infected mice were treated with phosphoramidon, an inhibitor of endothelin converting enzyme, there was a decrease in heart size and severity of pathology. Mitogen-activated protein kinases and the transcription factor activator-protein-1 regulate the expression of endothelin-1. Therefore, we examined the activation of mitogen-activated protein kinases in the myocardium by T. cruzi. Western blot demonstrated an extracellular signal regulated kinase. In addition, the activator-protein-1 DNA binding activity, as determined by electrophoretic mobility shift assay, was increased. Increased expression of cyclins A and cyclin D1 was observed in the myocardium, and immunohistochemistry studies revealed that interstitial cells and vascular and endocardial endothelial cells stained intensely with antibodies to these cyclins. These data demonstrate that T. cruzi infection of the myocardium activates extracellular signal regulated kinase, activator-protein-1, endothelin-1, and cyclins. The activation of these pathways is likely to contribute to the pathogenesis of chagasic heart disease. These experimental observations suggest that the vasculature plays a role in the pathogenesis of chagasic cardiomyopathy. Additionally, the identification of these pathways provides possible targets for therapeutic interventions to ameliorate or prevent the development of cardiomyopathy during T. cruzi infection.

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Year:  2001        PMID: 11334935     DOI: 10.1016/s0020-7519(01)00168-0

Source DB:  PubMed          Journal:  Int J Parasitol        ISSN: 0020-7519            Impact factor:   3.981


  39 in total

Review 1.  Chagas heart disease: report on recent developments.

Authors:  Fabiana S Machado; Linda A Jelicks; Louis V Kirchhoff; Jamshid Shirani; Fnu Nagajyothi; Shankar Mukherjee; Randin Nelson; Christina M Coyle; David C Spray; Antonio C Campos de Carvalho; Fangxia Guan; Cibele M Prado; Michael P Lisanti; Louis M Weiss; Susan P Montgomery; Herbert B Tanowitz
Journal:  Cardiol Rev       Date:  2012 Mar-Apr       Impact factor: 2.644

2.  Trypanosoma cruzi infection induces proliferation of vascular smooth muscle cells.

Authors:  Ghada S Hassan; Shankar Mukherjee; Fnu Nagajyothi; Louis M Weiss; Stefka B Petkova; Cecilia J de Almeida; Huan Huang; Mahalia S Desruisseaux; Boumediene Bouzahzah; Richard G Pestell; Chris Albanese; George J Christ; Michael P Lisanti; Herbert B Tanowitz
Journal:  Infect Immun       Date:  2006-01       Impact factor: 3.441

3.  Advances in imaging of animal models of Chagas disease.

Authors:  Linda A Jelicks; Herbert B Tanowitz
Journal:  Adv Parasitol       Date:  2011       Impact factor: 3.870

Review 4.  The vasculature in chagas disease.

Authors:  Cibele M Prado; Linda A Jelicks; Louis M Weiss; Stephen M Factor; Herbert B Tanowitz; Marcos A Rossi
Journal:  Adv Parasitol       Date:  2011       Impact factor: 3.870

Review 5.  Bioactive lipids in Trypanosoma cruzi infection.

Authors:  Fabiana S Machado; Shankar Mukherjee; Louis M Weiss; Herbert B Tanowitz; Anthony W Ashton
Journal:  Adv Parasitol       Date:  2011       Impact factor: 3.870

6.  Prolonged dipyridamole administration reduces myocardial perfusion defects in experimental chronic Chagas cardiomyopathy.

Authors:  Denise Mayumi Tanaka; Luciano Fonseca Lemos de Oliveira; José Antônio Marin-Neto; Minna Moreira Dias Romano; Eduardo Elias Vieira de Carvalho; Antonio Carlos Leite de Barros Filho; Fernando Fonseca França Ribeiro; Jorge Mejia Cabeza; Carla Duque Lopes; Camila Godoy Fabricio; Norival Kesper; Henrique Turin Moreira; Lauro Wichert-Ana; André Schmidt; Maria de Lourdes Higuchi; Edécio Cunha-Neto; Marcus Vinícius Simões
Journal:  J Nucl Cardiol       Date:  2018-02-01       Impact factor: 5.952

7.  Trypanosoma cruzi infection activates extracellular signal-regulated kinase in cultured endothelial and smooth muscle cells.

Authors:  Shankar Mukherjee; Huan Huang; Stefka B Petkova; Chris Albanese; Richard G Pestell; Vicki L Braunstein; George J Christ; Murray Wittner; Michael P Lisanti; Joan W Berman; Louis M Weiss; Herbert B Tanowitz
Journal:  Infect Immun       Date:  2004-09       Impact factor: 3.441

Review 8.  Perspectives on the Trypanosoma cruzi-host cell receptor interactions.

Authors:  Fernando Villalta; Julio Scharfstein; Anthony W Ashton; Kevin M Tyler; Fangxia Guan; Shankar Mukherjee; Maria F Lima; Sandra Alvarez; Louis M Weiss; Huan Huang; Fabiana S Machado; Herbert B Tanowitz
Journal:  Parasitol Res       Date:  2009-03-13       Impact factor: 2.289

9.  Microarray analysis of changes in gene expression in a murine model of chronic chagasic cardiomyopathy.

Authors:  Shankar Mukherjee; Thomas J Belbin; David C Spray; Dumitru A Iacobas; Louis M Weiss; Richard N Kitsis; Murray Wittner; Linda A Jelicks; Philip E Scherer; Aihao Ding; Herbert B Tanowitz
Journal:  Parasitol Res       Date:  2003-08-09       Impact factor: 2.289

10.  Cytokine-dependent and-independent gene expression changes and cell cycle block revealed in Trypanosoma cruzi-infected host cells by comparative mRNA profiling.

Authors:  Jaime A Costales; Johanna P Daily; Barbara A Burleigh
Journal:  BMC Genomics       Date:  2009-05-29       Impact factor: 3.969

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