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Santos, A. L. d. C.

Publications and source records attributed to Santos, A. L. d. C..

2 recordsLinked to original sources

Cyclodextrin-Based Delivery of the Annexin A1 Mimetic Peptide Ac2-26 Enhances Anti-Inflammatory Effects and PreventsDengue-Induced Lethality in Combination with AntiviralTherapy

Severe dengue is characterized by systemic inflammation, cytokine storm, vascular leakage, and hemorrhagic manifestations, largely driven by the host immune response to dengue virus (DENV) infection. Despite its burden, no licensed antivirals or host-directed therapies are currently available. Our group has previously identified Annexin A1 (AnxA1) as an endogenous regulator of inflammation in dengue. Treatment with the AnxA1 peptidomimetic, Ac2-26, improved clinical outcomes in murine models of severe dengue by promoting resolution of inflammation without affecting viral control. To explore new delivery strategies, we developed a novel formulation of Ac2-26 complexed with hydroxypropyl-{beta}-cyclodextrin (CDX-Ac2-26). In DENV-2-infected A129 mice, both intraperitoneal and oral CDX-Ac2-26 improved clinical scores and reversed thrombocytopenia. Notably, CDX-Ac2-26 reduced mast cell degranulation, MCPT-1 plasma levels, and CCL2 expression in spleen, with no effect on viral titers, indicating a host-targeted mechanism and overcoming the anti-inflammatory effects of the free peptide. Intraperitoneal administration achieved the same efficacy as oral dosing with only one-third of the dose. Importantly, the combination of CDX-Ac2-26 with the antiviral nucleotide analog sofosbuvir fully prevented disease and mortality in infected mice, highlighting a combinatorial effect between host-directed and antiviral therapies. These findings underscore the therapeutic potential of anti-inflammatory/pro-resolving strategies in severe dengue and support the development of CDX-Ac2-26 as a novel adjunctive treatment. Combining anti-inflammatory and antiviral approaches may enhance efficacy and reduce treatment-associated toxicity, offering a promising path for clinical translation. What is already known on this topic?O_LIPlasma levels of Annexin A1 are inversely correlated with the severity of clinical outcomes in dengue virus infection. C_LIO_LIThe Annexin A1 peptidomimetic Ac2-26 exhibits anti-inflammatory and pro-resolving effects against severe dengue in a murine model. C_LI What does this study add?O_LIThe Ac2-26-cyclodextrin complex enhances the anti-inflammatory effects of the peptide against dengue virus infection, allowing for lower dosing and oral administration. C_LIO_LIThe administration of the CDX-Ac2-26 with a nucleoside analog antiviral exhibits a combinatorial effectt, providing complete protection against the lethal outcome of severe dengue. C_LI What is the clinical significance?O_LICurrent dengue treatment relies on symptomatic management, as no directed anti-inflammatory agents or antivirals are currently available. We have identified a novel host-targeted strategy to resolve the disease. C_LIO_LIOur findings strongly support CDX-Ac2-26 as a promising adjunctive treatment strategy in combination with antiviral therapy for severe dengue, highlighting the potential of combinatorial approaches. C_LI

immunology↗

Annexin A1 as a key modulator of lung inflammation during coronavirus infections

Exacerbated inflammation is a major contributor to tissue damage and mortality in infectious diseases, including SARS-CoV-2. The resolution phase of inflammation is critical for restoring tissue homeostasis following an injury. Annexin A1 (AnxA1) is a ubiquitous protein that plays a fundamental role in the resolution of inflammation, including in preclinical models of infectious disease. Here, we investigated the role of AnxA1 in coronavirus infection and its potential as a host-targeted therapeutic strategy against SARS-CoV-2. Wild-type (WT) and AnxA1 knockout (AnxA1KO) mice were intranasally infected with the murine betacoronavirus MHV-3 to study the endogenous role of AnxA1. Immunohistochemistry and Western blot analyses in the lungs of MHV-3-infected mice revealed increased AnxA1 expression and its cleavage, which was associated with neutrophilic infiltration (Ly6G+ cells) mainly in peribronchiolar and perivascular regions. AnxA1-deficient mice exhibited higher neutrophilic infiltration and lung damage, alongside increased CXCL1 production in the lungs, when compared to WT-infected mice. In a murine model of SARS-CoV-2 infection in K18-hACE2 mice, we found increased AnxA1 cleavage associated with lung inflammation. Treatment of SARS-CoV-2-infected K18-hACE2 mice with the AnxA1-mimetic peptide, Ac2-26, reduced lung damage and lethality, without altering the host ability to deal with viral replication. Notably, Ac2-26-treated mice exhibited similar levels of protection to that afforded by the nucleotide analogue Remdesivir, following SARS-CoV-2 infection. Our findings highlight the protective role of the endogenous AnxA1 in mitigating coronavirus-induced lung inflammation and underscore the therapeutic potential of AnxA1 mimetic Ac2-26 as a host-targeted therapy against SARS-CoV-2.

immunology↗