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Kokici, J.

Publications and source records attributed to Kokici, J..

2 recordsLinked to original sources

Preserved CD4+ T cell helper function and coordinated antiviral immunity in people with HBV/HIV co-infection on long-term therapy

Background & AimsPeople with HBV/HIV co-infection on antiretroviral therapy achieve higher rates of HBV functional cure than those with HBV mono-infection, yet the immunological basis remains poorly characterised. HBV-specific CD4+ T cell responses are critical for viral control and functional cure but have been scarcely examined in HBV/HIV co-infection. Our previous studies in HBV/HIV co-infection demonstrated preserved stem-like CD8+ T cells and NK cell functional responses, but whether CD4+ T cell helper function is similarly maintained is unknown. MethodsWe analysed CD4+ T cell responses in 72 participants (HBV n=26, HBV/HIV n=24, HIV n=22) on suppressive antiviral therapy, using multiparameter flow cytometry, virus-specific CD4+ T cell functional assays and proliferation assays. ResultsPeople with HBV/HIV co-infection had significantly higher HBV envelope- and core-specific CD4+ T cell responses, with IL-2 production particularly discriminating between groups. CD4+ T cell responses to CEF (CMV, EBV, and Influenza) were comparable, confirming antigen specificity. Granzyme B-expressing cytotoxic CD4+ T cells and TCF-1+CD127+PD-1+CD4+ T cells were enriched in co-infection. CD4+ and CD8+ T cell responses were more frequently coordinated within donors in co-infection than in mono-infection (envelope 83% vs 50%; core 94% vs 60%), where they were more often uncoupled. IL-2 producing CD4+ T cells correlated with CD8+ T cell responses and the CD4:CD8 ratio in co-infection. HBV-specific proliferative capacity was enhanced in co-infection. ConclusionsPeople with HBV/HIV co-infection mount functional HBV-specific CD4+ T helper responses that are coordinated with CD8+ T cell immunity at the individual level. Together with our prior findings of preserved NK and CD8+ T cell responses in this cohort, these data identify treated HBV/HIV co-infection as a setting of integrated, rather than compromised, antiviral immunity. Impact and ImplicationsPeople with HBV/HIV co-infection can achieve HBV functional cure more frequently than people with HBV mono-infection, but the immune mechanisms remain unclear. This study shows that treated HBV/HIV co-infection is characterised by functional HBV-specific CD4 helper responses and coordinated CD4/CD8 antiviral immunity. These responses were most strongly associated with the CD4:CD8 ratio, a routinely available clinical marker, rather than with CD4 count alone. These findings argue that people with HBV/HIV co-infection should be prioritised in, not excluded from, HBV cure immunotherapy trials. Graphical Abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=90 SRC="FIGDIR/small/730166v1_ufig1.gif" ALT="Figure 1"> View larger version (24K): org.highwire.dtl.DTLVardef@89be79org.highwire.dtl.DTLVardef@13836bborg.highwire.dtl.DTLVardef@1915698org.highwire.dtl.DTLVardef@cc286c_HPS_FORMAT_FIGEXP M_FIG C_FIG

immunology↗

Expanded adaptive NKG2C+ NK cells exhibit potent ADCC and functional responses against HBV-infected hepatoma cell lines

BackgroundHepatitis B virus (HBV) infection remains a significant global health challenge, leading to chronic liver disease and hepatocellular carcinoma (HCC). Natural killer (NK) cells play an important role in the clearance of HBV-infected cells, but their efficacy is often compromised during chronic infection. Adaptive NK cells, characterised by NKG2C expression and enhanced functional responses, represent a promising therapeutic avenue for enhancing anti-HBV immunity and responses to HBV-driven cancers. MethodsWe applied an established protocol, involving K562-HLA-E expressing feeder cells and cytokines (IL-2), for the expansion of adaptive NK cells from cryopreserved T- and B cell depleted peripheral blood mononuclear cells (PBMCs) derived from donors with chronic HBV infection alone or with Human Immunodeficiency Virus (HIV) co-infection. We evaluated the adaptive profile of expanded NK cells, their antibody-dependent cellular cytotoxicity (ADCC) capacity and functional responses against hepatoma cell lines in the presence or absence of HBV infection. ResultsExpanded NK cells achieved >97% purity, with the NKG2C positive population exhibiting a mean 100-fold expansion. These cells demonstrated a predominantly adaptive phenotype with high surface expression of NKG2C and cytotoxic potential (Granzyme B). They maintained high levels of CD16 surface expression and upregulated CD2, essential for ADCC. Functionally, expanded adaptive NK cells showed enhanced ADCC capacity and functional responses to K562 targets, naive, HBV integrant-expressing, and de novo infected hepatoma cell lines. TGF-{beta} preconditioning induced tissue-resident features (CD103, CD49a) in expanded adaptive NK cells, while preserving their adaptive phenotype and functionality, enhancing their potential for liver targeted immunotherapy. Further, expanded adaptive NK cells demonstrated minimal reactivity against autologous activated T cells, suggesting limited off-target effects. ConclusionsOur study demonstrates the first successful expansion of adaptive NK cells with robust functional responses from donors with chronic viral infection. This approach creates opportunities for NK cell-based therapies alone or in combination with monoclonal antibodies contributing to HBV functional cure strategies and the treatment of HBV-driven cancers.

immunology↗