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Mitochondrial dysfunction in skeletal muscle during experimental Chagas disease
Alejandra L Báez1, María N Reynoso1, María S Lo Presti1
1Instituto de Investigaciones en Ciencias de la Salud (INICSA), CONICET and Universidad Nacional de Córdoba, Santa Rosa 1085, X5000ESU Córdoba, Argentina.
Abstract:
Trypanosoma cruzi invasion and replication in cardiomyocytes and other tissues induce cellular injuries and cytotoxic reactions, with the production of inflammatory cytokines and nitric oxide, both sources of reactive oxygen species. The myocyte response to oxidative stress involves the progression of cellular changes primarily targeting mitochondria. Similar alterations could be taking place in mitochondria from the skeletal muscle; if that is the case, a simple skeletal muscle biopsy would give information about the cardiac energetic production that could be used as a predictor of the chagasic cardiopathy evolution. Therefore, in the present paper we studied skeletal muscle mitochondrial structure and the enzymatic activity of citrate synthase and respiratory chain complexes I to IV (CI-CIV), in Albino Swiss mice infected with T. cruzi, Tulahuen strain and SGO Z12 and Lucky isolates, along the infection. Changes in the mitochondrial structure were detected in 100% of the mitochondria analyzed from the infected groups: they all presented at least 1 significant abnormality such as increase in their matrix or disorganization of their cristae, which are probably related to the enzymatic dysfunction. When we studied the Krebs cycle functionality through the measurement of the specific citrate synthase activity, we found it to be significantly diminished during the acute phase of the infection in Tulahuen and SGO Z12 infected groups with respect to the control one; citrate synthase activity from the Lucky group was significantly increased (p<0.05). The activity of this enzyme was reduced in all the infected groups during the chronic asymptomatic phase (p<0.001) and return to normal values (Tulahuen and SGO Z12) or increased its activity (Lucky) by day 365 post-infection (p.i.). When the mitochondrial respiratory chain was analyzed from the acute to the chronic phase of the infection through the measurement of the activity of complexes I to IV, the activity of CI remained similar to control in Tulahuen and Lucky groups, but was significantly augmented in the SGO Z12 one in the acute and chronic phases (p<0.05). CII increased its activity in Tulahuen and Lucky groups by day 75 p.i. and in SGO Z12 by day 365 p.i. (p<0.05). CIII showed a similar behavior in the 3 infected groups, remaining similar to control values in the first two stages of the infection and significantly increasing later on (p<0.0001). CIV showed an increase in its activity in Lucky throughout all stages of infection (p<0.0001) and an increase in Tulahuen by day 365days p.i. (p<0.0001); SGO Z12 on the other hand, showed a decreased CIV activity at the same time. The structural changes in skeletal muscle mitochondria and their altered enzyme activity began in the acute phase of infection, probably modifying the ability of mitochondria to generate energy; these changes were not compensated in the rest of the phases of the infection. Chagas is a systemic disease, which produces not only heart damage but also permanent skeletal muscle alterations.
Insights
Trypanosoma cruzi infection causes skeletal muscle mitochondrial damage and altered enzyme activity, impacting energy production. These changes may predict the progression of Chagasic cardiopathy.
Area of Science:
- Mitochondrial Biology
- Parasitology
- Cardiovascular Disease
Background:
- Trypanosoma cruzi infection leads to cardiac damage through cellular injury and oxidative stress.
- Mitochondrial dysfunction in cardiomyocytes is implicated in Chagasic cardiopathy.
- Skeletal muscle mitochondria may reflect cardiac energetic status.
Purpose of the Study:
- To investigate skeletal muscle mitochondrial structure and enzymatic activity in mice infected with T. cruzi.
- To assess if skeletal muscle mitochondrial changes correlate with Chagasic cardiopathy progression.
Main Methods:
- Albino Swiss mice were infected with T. cruzi (Tulahuen, SGO Z12, Lucky isolates).
- Skeletal muscle mitochondrial structure was analyzed.
- Enzymatic activity of citrate synthase and respiratory chain complexes I-IV (CI-CIV) was measured during acute and chronic infection phases.
Main Results:
- All infected mice showed skeletal muscle mitochondrial structural abnormalities.
- Citrate synthase activity was altered, decreasing in Tulahuen and SGO Z12 during the acute phase and in all groups during the chronic phase.
- Respiratory chain complex activities (CI-CIV) exhibited varied changes across infection phases and isolates, with some complexes showing significant increases or decreases.
Conclusions:
- T. cruzi infection induces structural and functional mitochondrial alterations in skeletal muscle early in the infection.
- These skeletal muscle mitochondrial changes may impact cellular energy production and potentially serve as biomarkers for Chagasic cardiopathy.
- Chagas disease causes systemic effects, including permanent skeletal muscle damage beyond cardiac involvement.
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