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1.
Heliyon ; 10(4): e25539, 2024 Feb 29.
Article in English | MEDLINE | ID: mdl-38370238

ABSTRACT

Immune imprinting is now evident in COVID-19 vaccinated people. This phenomenon may impair the development of effective neutralizing antibodies against variants of concern (VoCs), mainly Omicron and its subvariants. Consequently, the boost doses with bivalent vaccines have not shown a significant gain of function regarding the neutralization of Omicron. The approach to design COVID-19 vaccines must be revised to improve the effectiveness against VoCs. Here, we took advantage of the self-amplifying characteristic of RepRNA and developed a polyvalent formulation composed of mRNA from five VoCs. LION/RepRNA Polyvalent induced neutralizing antibodies in mice previously immunized with LION/RepRNA D614G and reduced the imprinted phenotype associated with low neutralization capacity of Omicron B.1.1.529 pseudoviruses. The polyvalent vaccine can be a strategy to handle the low neutralization of Omicron VoC, despite booster doses with either monovalent or bivalent vaccines.

2.
Front Cell Infect Microbiol ; 11: 765879, 2021.
Article in English | MEDLINE | ID: mdl-34869068

ABSTRACT

Chagas disease is a parasitic infection caused by the intracellular protozoan Trypanosoma cruzi. Chronic Chagas cardiomyopathy (CCC) is the most severe manifestation of the disease, developed by approximately 20-40% of patients and characterized by occurrence of arrhythmias, heart failure and death. Despite having more than 100 years of discovery, Chagas disease remains without an effective treatment, especially for patients with CCC. Since the pathogenesis of CCC depends on a parasite-driven systemic inflammatory profile that leads to cardiac tissue damage, the use of immunomodulators has become a rational alternative for the treatment of CCC. In this context, different classes of drugs, cell therapies with dendritic cells or stem cells and gene therapy have shown potential to modulate systemic inflammation and myocarditis in CCC models. Based on that, the present review provides an overview of current reports regarding the use of immunomodulatory agents in treatment of CCC, bringing the challenges and future directions in this field.


Subject(s)
Chagas Cardiomyopathy , Chagas Disease , Trypanosoma cruzi , Chagas Cardiomyopathy/therapy , Chagas Disease/drug therapy , Chronic Disease , Humans , Immunomodulating Agents , Immunomodulation
3.
Front Immunol ; 10: 1257, 2019.
Article in English | MEDLINE | ID: mdl-31244833

ABSTRACT

Chronic Chagas disease cardiomyopathy (CCC) is a major cause of heart disease in Latin America and treatment for this condition is unsatisfactory. Here we investigated the effects of BA5, an amide semi-synthetic derivative betulinic acid, in a model of CCC. Mice chronically infected with T. cruzi were treated orally with BA5 (10 or 1 mg/Kg), three times per week, for 2 months. BA5 treatment decreased inflammation and fibrosis in heart sections but did not improve exercise capacity or ameliorate cardiac electric disturbances in infected mice. Serum concentrations of TNF-α, IFN-γ, and IL-1ß, as well as cardiac gene expression of pro-inflammatory mediators, were reduced after BA5 treatment. In contrast, a significant increase in the anti-inflammatory cytokine IL-10 concentration was observed in BA5-treated mice in both tested doses compared to vehicle-treated mice. Moreover, polarization to anti-inflammatory/M2 macrophage phenotype was evidenced by a decrease in the expression of NOS2 and proinflammatory cytokines and the increase in M2 markers, such as Arg1 and CHI3 in mice treated with BA5. In conclusion, BA5 had a potent anti-inflammatory activity on a model of parasite-driven heart disease related to IL-10 production and a switch from M1 to M2 subset of macrophages.


Subject(s)
Anti-Inflammatory Agents/pharmacology , Chagas Cardiomyopathy/drug therapy , Interleukin-10/immunology , Macrophages/immunology , Triterpenes/pharmacology , Trypanosoma cruzi/immunology , Animals , Chagas Cardiomyopathy/immunology , Chagas Cardiomyopathy/pathology , Chronic Disease , Disease Models, Animal , Fibrosis , Inflammation/drug therapy , Inflammation/immunology , Inflammation/pathology , Macrophages/pathology , Mice , Pentacyclic Triterpenes , Betulinic Acid
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