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Age-related differences in immune responses to inactivated influenza and adjuvanted recombinant herpes zoster vaccines
Gizem Kilic, Esther J.M. Taks, Leonie S. Helder, Elisabeth A. Dulfer, Büsra Geckin, Liesbeth van Emst, Heidi Lemmers, Stefano Berrè, Adhidev Biswas, Mumin Ozturk, Yutaka Negishi, Wivine Burny, Sofia M. Buonocore, Jaap ten Oever, Musa M. Mhlanga, Mihai G. Netea
Gizem Kilic, Esther J.M. Taks, Leonie S. Helder, Elisabeth A. Dulfer, Büsra Geckin, Liesbeth van Emst, Heidi Lemmers, Stefano Berrè, Adhidev Biswas, Mumin Ozturk, Yutaka Negishi, Wivine Burny, Sofia M. Buonocore, Jaap ten Oever, Musa M. Mhlanga, Mihai G. Netea
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Research Article Aging Immunology Infectious disease

Age-related differences in immune responses to inactivated influenza and adjuvanted recombinant herpes zoster vaccines

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Abstract

Immunosenescence, the biological aging of the immune system, leads to dysregulated immune responses, increasing susceptibility to infections and reducing vaccine efficacy in older adults, as seen with flu vaccines. In contrast, the AS01-adjuvanted recombinant herpes zoster vaccine (RZV) maintains high and sustained efficacy, offering 82% protection against herpes zoster at 11 years after vaccination in individuals over 50. To identify factors affecting age-dependent vaccine efficacy, we conducted a randomized, partially placebo-controlled clinical study. Young adults (18–35 years, n = 84) were randomized 3:3:1:1 to receive either RZV, an inactivated quadrivalent seasonal influenza vaccine (IIV4), or a placebo for RZV or for IIV4, and older adults (≥60, n = 63) were randomized 1:1 to receive RZV or IIV4. RZV elicited robust antibody production, antigen-specific polyfunctional CD4+ T cell responses, and IFN-γ from PBMCs in both age groups, while IIV4 increased antibody responses but induced fewer antigen-specific CD4+ T cells and no elevation of IFN-γ from PBMCs. Interestingly, RZV reduced systemic inflammation in older adults, particularly after the second injection. Baseline inflammation negatively correlated with antibody production and IFN-γ response, especially after RZV. Our findings suggest that RZV may help overcome immunosenescence by enhancing cellular responses and potentially decreasing systemic inflammation, deserving further investigation into the underlying molecular mechanisms.

Authors

Gizem Kilic, Esther J.M. Taks, Leonie S. Helder, Elisabeth A. Dulfer, Büsra Geckin, Liesbeth van Emst, Heidi Lemmers, Stefano Berrè, Adhidev Biswas, Mumin Ozturk, Yutaka Negishi, Wivine Burny, Sofia M. Buonocore, Jaap ten Oever, Musa M. Mhlanga, Mihai G. Netea

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Figure 7

Correlation between circulating protein concentrations at baseline and RZV-induced immune responses across age groups.

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Correlation between circulating protein concentrations at baseline and R...
(A) Heatmap depicting the association between baseline concentrations of circulating immune-related proteins and the fold antibody response (D60/D0 and D120/D0) after RZV. (B) Example correlation plots showing the relationship between baseline levels of HGF and IL-8 with the fold antibody response after the first (D60/D0) and second dose (D120/D0). (C) Heatmap illustrating the correlation between baseline circulating immune-related proteins and the fold IFN-γ response (D60/D0, D120/D0, and D240/D0) from PBMCs after 7-day stimulation with 4 μg/mL of the gE antigen in RZV. (D) Example correlation plots of baseline MMP10 levels with D60/D0 fold IFN-γ, and CCL19 with D120/D0 and D240/D0 fold IFN-γ production. Spearman’s correlation was used; the scale in A and C, along with the r values on the correlation graphs, represent Spearman’s correlation coefficients. Stars on heatmaps indicate the nominal P values. NPX, normalized protein expression. *P < 0.05, **P < 0.01, ***P < 0.001.

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ISSN 2379-3708

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