Dual activity of PD-L1 targeted Doxorubicin immunoliposomes promoted an enhanced efficacy of the antitumor immune response in melanoma murine model

The immunomodulation of the antitumor response driven by immunocheckpoint inhibitors (ICIs) such as PD-L1 (Programmed Death Ligand-1) monoclonal antibody (α-PD-L1) have shown relevant clinical outcomes in a subset of patients. This fact has led to the search for rational combinations with other ther...

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Veröffentlicht in:Journal of nanobiotechnology 2021-04, Vol.19 (1), p.102-102, Article 102
Hauptverfasser: Merino, María, Lozano, Teresa, Casares, Noelia, Lana, Hugo, Troconiz, Iñaki F, Ten Hagen, Timo L M, Kochan, Grazyna, Berraondo, Pedro, Zalba, Sara, Garrido, María J
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Sprache:eng
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Zusammenfassung:The immunomodulation of the antitumor response driven by immunocheckpoint inhibitors (ICIs) such as PD-L1 (Programmed Death Ligand-1) monoclonal antibody (α-PD-L1) have shown relevant clinical outcomes in a subset of patients. This fact has led to the search for rational combinations with other therapeutic agents such as Doxorubicin (Dox), which cytotoxicity involves an immune activation that may enhance ICI response. Therefore, this study aims to evaluate the combination of chemotherapy and ICI by developing Dox Immunoliposomes functionalized with monovalent-variable fragments (Fab') of α-PD-L1. Immunoliposomes were assayed in vitro and in vivo in a B16 OVA melanoma murine cell line over-expressing PD-L1. Here, immune system activation in tumor, spleen and lymph nodes, together with the antitumor efficacy were evaluated. Results showed that immunoliposomes bound specifically to PD-L1 cells, yielding higher cell interaction and Dox internalization, and decreasing up to 30-fold the IC , compared to conventional liposomes. This mechanism supported a higher in vivo response. Indeed, immunoliposomes promoted full tumor regression in 20% of mice and increased in 1 month the survival rate. This formulation was the only treatment able to induce significant (p 
ISSN:1477-3155
1477-3155
DOI:10.1186/s12951-021-00846-z