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Microbes Infect ; 11(2): 264-73, 2009 Feb.
Article in English | MEDLINE | ID: mdl-19100857

ABSTRACT

The comprehension of the molecular mechanisms leading to Trypanosoma cruzi-elicited heart dysfunction might contribute to design novel therapeutic strategies aiming to ameliorate chronic Chagas disease cardiomyopathy. In C3H/He mice infected with the low virulence T. cruzi Colombian strain, the persistent cardiac inflammation composed mainly of CCR5(+) T lymphocytes parallels the expression of CC-chemokines in a pro-inflammatory IFN-gamma and TNF-alpha milieu. The chronic myocarditis is accompanied by increased frequency of peripheral CCR5(+)LFA-1(+) T lymphocytes. The treatment of chronically T. cruzi-infected mice with Met-RANTES, a selective CCR1/CCR5 antagonist, led to a 20-30% decrease in CD4(+) cell numbers as well as IL-10, IL-13 and TNF-alpha expression. Further, Met-RANTES administration impaired the re-compartmentalization of the activated CD4(+)CCR5(+) lymphocytes. Importantly, Met-RANTES treatment resulted in significant reduction in parasite load and fibronectin deposition in the heart tissue. Moreover, Met-RANTES treatment significantly protected T. cruzi-infected mice against connexin 43 loss in heart tissue and CK-MB level enhancement, markers of heart dysfunction. Thus, our results corroborate that therapeutic strategies based on the modulation of CCR1/CCR5-mediated cell migration and/or effector function may contribute to cardiac tissue damage limitation during chronic Chagas disease.


Subject(s)
CCR5 Receptor Antagonists , Chagas Disease/drug therapy , Chagas Disease/pathology , Chemokine CCL5/therapeutic use , Immunologic Factors/therapeutic use , Myocardium/pathology , Receptors, CCR1/antagonists & inhibitors , Trypanosoma cruzi/physiology , Animals , CD4-Positive T-Lymphocytes/immunology , Chagas Cardiomyopathy/drug therapy , Chagas Cardiomyopathy/pathology , Chemokine CCL5/pharmacology , Connexin 43/analysis , Female , Heart/parasitology , Immunologic Factors/pharmacology , Interleukin-10/biosynthesis , Interleukin-13/biosynthesis , Mice , Mice, Inbred C3H , Myocardium/chemistry , Tumor Necrosis Factor-alpha/biosynthesis
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