DOI: 10.1177/21679436261476438 ISSN: 2167-9436

Monoclonal Antibody-Based Anti-Cryptococcosis Therapy

Marcos William de Lima Gualque, Gabriel Rezende Pimenta, Daniel Gomes de Sousa, Lara Yukari Ogasawara, Aline Ruan Wu, Mariana Macul, Matheus Torrichelli Antunes, Marcela Santana Demarchi, Giovana Moreno Fratus, Maria Júlia Siqueto, Andrei Moroz, Maria José Soares Mendes Giannini, Ana Marisa Fusco Almeida

Cryptococcosis remains one of the most severe invasive fungal diseases worldwide, causing high morbidity and mortality, particularly among immunocompromised individuals. Despite the availability of antifungal drugs, current therapeutic regimens are limited by drug toxicity, prolonged treatment, antifungal resistance, biofilm-associated tolerance, and frequent disease relapse, highlighting the need for novel therapeutic approaches. Monoclonal antibodies (mAbs) have emerged as promising immunotherapeutic agents because of their ability to specifically target fungal components while modulating host immune responses. This review provides a comprehensive overview of recent advances in monoclonal antibody-based strategies against Cryptococcus spp. Additionally, recent innovations in antibody engineering, including radioimmunotherapy, Fc engineering, nanobody technology, immune checkpoint modulation, and chimeric antigen receptor-(CAR)-based cellular therapies, are highlighted as emerging approaches with the potential to enhance antifungal efficacy and overcome current therapeutic limitations. Finally, we discuss the major challenges associated with the clinical translation of antifungal mAbs, including pharmacokinetic barriers, production costs, limited clinical evidence, and regulatory constraints. Collectively, the available evidence supports mAbs as promising adjunctive immunotherapeutic agents and underscores the importance of continued advances in antibody engineering and clinical research to facilitate their incorporation into future strategies for the treatment of cryptococcosis.

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