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Updated: Jan 25, 2026

Ex Vivo Infection of Human Lymphoid Tissue and Female Genital Mucosa with Human Immunodeficiency Virus 1 and Histoculture
Published on: October 12, 2018
Resident CD49a+CD103+NKG2C+ NK cells restrict HIV infection in human lymphoid tissue explants
David Perea1, Alba Gonzalez1, Ana Gallego-Cortés1
1HIV Translational Laboratory, Infectious Diseases Department, Vall d'Hebron Research Institute (VHIR), Autonomous University of Barcelona, 08035 Barcelona, Spain.
Abstract:
Natural killer (NK) cells are pivotal effectors in antiviral immunity, yet their tissue-specific roles during acute HIV infection remain poorly defined. Using an ex vivo human tonsillar tissue model, we profile NK cell responses to early HIV infection and uncover distinct subsets with specialized functions. We identify a previously uncharacterized memory-like NK population (CD16+/-CD69+CD49a+CD103+NKG2C+) associated with reduced viral burden and enriched in cytotoxic mediators (GNLY, PRF1, and GZMB), apoptotic ligands (FASLG and TRAIL), cytokine receptors (IL2RA, IL2RB, IL2RG, IL12RB2, and IL18R1) and trafficking molecules (CCL3-5, CCR7, and SELL). Although functionally capable of clearing HIV-infected CD4+ T cells in a tissue-mimetic environment, they show impaired cytotoxicity and transcriptional signs of exhaustion after infection. Conversely, HIV drives the reprogramming of immature CD16-CD69+ NK cells toward a more cytotoxic and migratory effector phenotype. These findings reveal dynamic NK cell adaptations in lymphoid tissue during early HIV infection and highlight tissue-resident NK cells as promising targets for immunotherapeutic intervention.
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