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A therapeutic HBV vaccine containing a checkpoint modifier enhances CD8+ T cell and antiviral responses
Mohadeseh Hasanpourghadi, Mikhail Novikov, Robert Ambrose, Arezki Chekaoui, Dakota Newman, ZhiQuan Xiang, Andrew D. Luber, Sue L. Currie, XiangYang Zhou, Hildegund C.J. Ertl
Mohadeseh Hasanpourghadi, Mikhail Novikov, Robert Ambrose, Arezki Chekaoui, Dakota Newman, ZhiQuan Xiang, Andrew D. Luber, Sue L. Currie, XiangYang Zhou, Hildegund C.J. Ertl
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Research Article Immunology Vaccines

A therapeutic HBV vaccine containing a checkpoint modifier enhances CD8+ T cell and antiviral responses

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Abstract

In patients who progress from acute hepatitis B virus (HBV) infection to a chronic HBV (CHB) infection, CD8+ T cells fail to eliminate the virus and become impaired. A functional cure of CHB likely requires CD8+ T cell responses different from those induced by the infection. Here we report preclinical immunogenicity and efficacy of an HBV therapeutic vaccine that includes herpes simplex virus (HSV) glycoprotein D (gD), a checkpoint modifier of early T cell activation, that augments CD8+ T cell responses. The vaccine is based on a chimpanzee adenovirus serotype 6 (AdC6) vector, called AdC6-gDHBV2, which targets conserved and highly immunogenic regions of the viral polymerase and core antigens fused to HSV gD. The vaccine was tested with and without gD in mice for immunogenicity, and in an AAV8-1.3HBV vector model of antiviral efficacy. The vaccine encoding the HBV antigens within gD stimulates potent and broad CD8+ T cell responses. In a surrogate model of HBV infection, a single intramuscular injection achieved pronounced and sustained declines of circulating HBV DNA copies and HBV surface antigen; both inversely correlated with HBV-specific CD8+ T cell frequencies in spleen and liver.

Authors

Mohadeseh Hasanpourghadi, Mikhail Novikov, Robert Ambrose, Arezki Chekaoui, Dakota Newman, ZhiQuan Xiang, Andrew D. Luber, Sue L. Currie, XiangYang Zhou, Hildegund C.J. Ertl

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Figure 3

Vaccine efficacy in mice infected for 4 weeks with AAV8-1.3HBV.

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Vaccine efficacy in mice infected for 4 weeks with AAV8-1.3HBV.
(A) Expe...
(A) Experimental outline for graphs in B and Figure 4, A and B for 10 mice that were injected with 1 × 109 vg of AAV8-1.3HBV. (B) HBV genome copy levels in serum over time. Significant differences comparing baseline to after-vaccination data were calculated by multiple unpaired Mann-Whitney test and levels of significance are displayed within the graph. The dotted line at 105 indicates the detection limit. (C) Experimental outline for graphs D and E and Figure 4, C–G for 5 mice that were injected with 1 × 1010 vg of AAV8-1.3HBV. (D) HBV genome copy levels in serum over time. Significant differences comparing baseline to after-vaccination data were calculated by multiple unpaired Mann-Whitney test and levels of significance are displayed on top of each group. The dotted line at 105 indicates the detection limit. (E) ELISA data for HBsAg in sera are shown as absorbance values from which background data had been subtracted. The dotted line shows results for the negative control (serum from naive mice). Significant differences versus baseline were determined by 2-way ANOVA and P values are displayed within the graph.

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