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Published on: November 5, 2021
Dual Treatment of Chronic Chagasic Cardiomyopathy and Parasitic Burden via Combination Nanotherapy
Austeja Staneviciute1, Debora B Scariot1,2, Yu-Gang Liu1
1Department of Biomedical Engineering, Chemistry of Life Processes Institute, Northwestern University, Evanston, Illinois 60208, United States.
Insights
This study shows that combining benznidazole with rapamycin polymersomes effectively treats chronic Chagas disease by reducing inflammation and parasite load, improving heart function without reactivating infection.
Area of Science:
- Immunology
- Nanomedicine
- Parasitology
Background:
- Chronic Chagas disease involves persistent Trypanosoma cruzi infection and inflammation, leading to cardiac damage.
- Current benznidazole treatment reduces parasite burden but doesn't prevent cardiomyopathy progression.
- Balancing anti-inflammatory effects with necessary parasite-specific immunity is a key therapeutic challenge.
Purpose of the Study:
- To investigate a combination therapy using benznidazole and rapamycin-loaded polymersomes for chronic Chagas disease.
- To evaluate the treatment's efficacy in managing parasitic burden and cardiac inflammation in a murine model.
- To assess the immunomodulatory and cardioprotective effects of the combination therapy.
Main Methods:
- Utilized a chronic Chagas disease murine model with cardiac abnormalities.
- Administered a combination therapy of benznidazole and rapamycin-loaded poly(ethylene glycol)-b-poly(propylene sulfide) polymersomes.
- Assessed parasitic burden, inflammatory markers (cytokines like IL-10 and TNF-α), and cardiac function via electrocardiography.
Main Results:
- The combination therapy effectively controlled both systemic and local inflammation and parasitic burden.
- No systemic reactivation of Trypanosoma cruzi infection was observed.
- Enhanced cardioprotective effects were noted, including increased anti-inflammatory IL-10 and normalized TNF-α levels, leading to improved cardiac function.
Conclusions:
- Combination therapy with benznidazole and rapamycin polymersomes offers a promising strategy for managing chronic Chagas disease.
- This approach effectively targets both parasitic load and detrimental inflammation, improving cardiac outcomes.
- Precise timing and immunomodulation are crucial for successful Chagas disease treatment strategies.
Abstract:
In chronic Chagas disease, the persistence of the protozoan Trypanosoma cruzi (T. cruzi) is associated with an extensive inflammatory response that impacts cardiac function. The standard treatment, oral benznidazole, effectively targets the parasitic burden but does not address the chronic inflammation nor prevent the progression of severe cardiomyopathies. This presents an inherent immunotherapeutic challenge, as implementing an anti-inflammatory approach can have the unwanted effect of inhibiting beneficial parasite-specific immunity. Here, we investigated a combination therapy approach using benznidazole and immunomodulatory rapamycin-loaded poly(ethylene glycol)-b-poly(propylene sulfide) polymersome nanocarriers in a chronic Chagas disease murine model with cardiac abnormalities. The combined treatment demonstrated effective management of both inflammation and parasitic burden at systemic and local levels. No systemic reactivation of T. cruzi infection was observed, along with cardioprotective immunomodulatory effects through the modulation of cytokines, management of parasitic burden, and improved cardiac function based on electrocardiography assessment. The combination treatment enhanced a protective cytokine response in the heart, characterized by increased anti-inflammatory IL-10 levels, achieving greater effects than standard benznidazole treatment, and normalized TNF-α levels. Localized immunomodulatory effects, along with parasitic burden control, extended to other solid tissues relevant to parasite pathology and reservoirs. These findings highlight the therapeutic potential of modulating the immune response in chronic Chagas disease with rapamycin polymersomes and emphasize the importance of precise treatment timing in the strategy's efficacy.
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