Key result
Alpha-2-macroglobulin deficiency in mice resulted in approximately 10 times more amastigote nests and significantly increased fibrosis in the heart compared to wild-type mice following Trypanosoma cruzi infection.
Why the study?
Does alpha2-macroglobulin deficiency increase heart parasite load and fibrosis in mice infected with Trypanosoma cruzi?
Does alpha2-macroglobulin deficiency increase heart parasite load and fibrosis in mice infected with Trypanosoma cruzi?
p-value: p=<0.05
Murine alpha(2)-macroglobulin plays a protective role against acute myocarditis and fibrosis induced by experimental Trypanosoma cruzi infection.
May indicate protective role of alpha-2-macroglobulin against murine T. cruzi myocarditis; leaves open relevance to human Chagas cardiomyopathy.
Trypanosoma cruzi proteinases are involved in host cell invasion in human patients and in mouse models. In mice, murine alpha(2)-macroglobulin (MAM) and murinoglobulin are circulating plasma proteinase inhibitors that also have important roles in inflammation and immune modulation. To define their role in experimental Chagas disease, we investigated the susceptibility to T. cruzi infection of mice that are deficient only in alpha2-macroglobulins (AM-KO) or in both MAM and monomeric murinoglobulin-1 (MM-KO), relative to the wild type (WT). Despite the high parasite load, parasitemia was lower in AM-KO and MM-KO mice than in WT mice. Nevertheless, we observed a significantly higher parasite load in the hearts of AM-KO and MM-KO mice, i.e., more amastigote nests and inflammatory infiltrates than in WT mice. This result demonstrates a protective role for MAM in the acute phase of murine T. cruzi infection. We further demonstrated in vitro that human alpha2-macroglobulins altered the trypomastigote morphology and motility in a dose-dependent way, and that also impaired T. cruzi invasion in cardiomyocytes. Finally, we demonstrated that the levels of transforming growth factor beta in AM-KO mice increased significantly in the third week postinfection, concomitant with high amastigote burden and important fibrosis. Combined, these in vivo and in vitro findings demonstrate that the MAM contribute to the resistance of mice to acute myocarditis induced by experimental T. cruzi infection.
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Waghabi et al. (2002) studied Trypanosoma cruzi infection (Chagas disease). Alpha-2-macroglobulin deficiency (AM-KO and MM-KO) vs. Wild-type (WT) mice was evaluated on Parasite load (amastigote nests) in the heart at 22 days post-infection (p=<0.05). Alpha-2-macroglobulin deficiency in mice resulted in approximately 10 times more amastigote nests and significantly increased fibrosis in the heart compared to wild-type mice following Trypanosoma cruzi infection.
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