Combined dendritic cell and anti-TIGIT immunotherapy potentiates adaptive NK cells against HIV-1

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Institut Català de la Salut
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[Sánchez-Cerrillo I] Immunology Unit from Hospital Universitario La Princesa, Instituto Investigación Sanitaria-Princesa IIS-IP, Madrid, Spain. CIBER Infectious Diseases (CIBERINFEC) from Instituto de Salud Carlos III, Madrid, Spain. [Agudo-Lera M, Popova O, Tsukalov I, Calvet-Mirabent M] Immunology Unit from Hospital Universitario La Princesa, Instituto Investigación Sanitaria-Princesa IIS-IP, Madrid, Spain. Medicine Department, Universidad Autónoma de Madrid, Madrid, Spain. [de los Santos I] CIBER Infectious Diseases (CIBERINFEC) from Instituto de Salud Carlos III, Madrid, Spain. Infectious Diseases Unit Hospital Universitario La Princesa, Madrid, Spain. [Sánchez-Gaona N, Grau-Expósito J, Genescà M, Buzón MJ] Servei de Malalties Infeccioses, Vall d’Hebron Hospital Universitari, Barcelona, Spain. Vall d’Hebron Institut de Recerca (VHIR), Barcelona, Spain
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Vall d'Hebron Barcelona Hospital Campus
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Agudo-Lera, María
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Popova, Olga
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Sánchez Gaona, Nerea
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Sánchez Cerrillo, Ildefonso
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Tsukalov, Ilya
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Calvet-Mirabent, Marta
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De Los Santos Gil, Ignacio
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Grau Exposito, Judith
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Genescà Ferrer, Meritxell
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Buzon, Maria Jose
dc.date.accessioned
2025-10-01T01:30:20Z
dc.date.available
2025-10-01T01:30:20Z
dc.date.issued
2025-08-06T06:06:22Z
dc.date.issued
2025-08-06T06:06:22Z
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2025-07-11
dc.identifier
Sánchez-Cerrillo I, Agudo-Lera M, Popova O, Tsukalov I, Calvet-Mirabent M, de los Santos I, et al. Combined dendritic cell and anti-TIGIT immunotherapy potentiates adaptive NK cells against HIV-1. EMBO Mol Med. 2025 Jul 11;17:1756-93.
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1757-4684
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http://hdl.handle.net/11351/13488
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10.1038/s44321-025-00255-x
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40473838
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001502735100001
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http://hdl.handle.net/11351/13488
dc.description.abstract
Dendritic cell; HIV; Natural killer
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Cèl·lula dendrítica; VIH; Assassí natural
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Célula dendrítica; VIH; Asesino natural
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Natural Killer (NK) cells are promising candidates for targeting persistently infected CD4 + T cells in people with HIV-1 (PWH). However, chronicity of HIV-1 infection impairs NK cell functionality, requiring additional strategies to potentiate their cytotoxic activity. This study demonstrates that dendritic cells primed with nanoparticles containing Poly I:C (Nano-PIC-MDDC) enhance the natural cytotoxic function of NK cells from effective responder PWH. These NK cells exhibit increased proportions of NKG2C+ cell subsets capable of eliminating HIV-1 infected CD4 + T cells through the TRAIL receptor. In contrast, in non-responder PWH, elevated expression of the inhibitory receptor TIGIT is associated with reduced frequencies of NKG2C + NK cells and diminished TRAIL expression. TIGIT blockade restores cytotoxicity of NK cells from non-responder PWH against HIV-1-infected cells by upregulating TRAIL. Furthermore, combining Nano-PIC-MDDC-primed NK cells with anti-TIGIT immunotherapy in humanized NSG mice reduces the expansion of HIV-1 infected cells, preserves NKG2C + NK cell precursors and increases TRAIL expression in tissue. Collectively, these findings support the combined use of Nano-PIC-MDDC and TIGIT blockade as a promising immunotherapeutic strategy toward an HIV-1 cure.
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EMG was supported by Ramón y Cajal Program (RYC2018-024374-I), the Spanish Agencia Estatal de Investigación RETOS, Generación de conocimiento and consolidation programs (RTI2018-097485-A-I00; PID2021-127899OB-I00; CNS2023-144841), La Caixa Banking Foundation ETI-CureHIV (HR20-00218), GLD24/00117 grant from Gilead Biosciences and infectious diseases CIBER (CIBERINFEC) from ISCIII (CB21/13/00107). MAL was supported by the Formación de Personal Investigador (FPI) grant PRE2022-104516. IT was supported by FPI UAM fellowship. CDA was supported by Comunidad de Madrid Talento Program (2017-T1/BMD-5396). MCM was supported by La Caixa Foundation ETI-CureHIV (HR20-00218). P2022/BMD7209-INTEGRAMUNE from Comunidad Autónoma de Madrid and La Caixa Health Research Grant LCF/PR/HR23/52430018 to and PID2023-149541OB-I00 FSM also supported the study. ISC was supported by infectious diseases CIBER from ISCIII (CB21/13/00107). JGP was supported by La Caixa Health program ETI-CureHIV project (HR20-00218), the CIBERINFECC from the National Health Institute Carlos III, and the project PI22/01120. MLT was supported by the Spanish Agencia Estatal de Investigación, Ministerio de Ciencia, Innovación y Universidades (PID2022-138880OB-I00 and PDC2021-121238-I00). NMC contributed to ROC Curve analysis.
dc.format
application/pdf
dc.language
eng
dc.publisher
EMBO Press
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EMBO Molecular Medicine;17
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https://doi.org/10.1038/s44321-025-00255-x
dc.rights
Attribution 4.0 International
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http://creativecommons.org/licenses/by/4.0/
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info:eu-repo/semantics/openAccess
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Scientia
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Cèl·lules K - Immunologia
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Infeccions per VIH - Immunoteràpia
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Cèl·lules dendrítiques - Immunologia
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Cèl·lules T - Immunologia
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ANATOMY::Cells::Blood Cells::Leukocytes::Leukocytes, Mononuclear::Lymphocytes::Killer Cells, Natural
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ANALYTICAL, DIAGNOSTIC AND THERAPEUTIC TECHNIQUES, AND EQUIPMENT::Therapeutics::Biological Therapy::Immunomodulation::Immunotherapy
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DISEASES::Virus Diseases::RNA Virus Infections::Retroviridae Infections::Lentivirus Infections::HIV Infections
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Other subheadings::Other subheadings::/therapy
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ANATOMY::Cells::Blood Cells::Leukocytes::Leukocytes, Mononuclear::Lymphocytes::T-Lymphocytes::CD4-Positive T-Lymphocytes
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ANATOMY::Cells::Antigen-Presenting Cells::Dendritic Cells
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ANATOMÍA::células::células sanguíneas::leucocitos::leucocitos mononucleares::linfocitos::células asesinas naturales
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TÉCNICAS Y EQUIPOS ANALÍTICOS, DIAGNÓSTICOS Y TERAPÉUTICOS::terapéutica::terapia biológica::inmunomodulación::inmunoterapia
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ENFERMEDADES::virosis::infecciones por virus ARN::infecciones por Retroviridae::infecciones por Lentivirus::infecciones por VIH
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Otros calificadores::Otros calificadores::/terapia
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ANATOMÍA::células::células sanguíneas::leucocitos::leucocitos mononucleares::linfocitos::linfocitos T::linfocitos T CD4-positivos
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ANATOMÍA::células::células presentadoras de antígenos::células dendríticas
dc.title
Combined dendritic cell and anti-TIGIT immunotherapy potentiates adaptive NK cells against HIV-1
dc.type
info:eu-repo/semantics/article
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info:eu-repo/semantics/publishedVersion


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