Human Antibody Responses Following Vaccinia Immunization Using Protein Microarrays and Correlation With Cell-Mediated Immunity and Antibody-Dependent Cellular Cytotoxicity Responses

使用蛋白质微阵列检测痘苗免疫后的人体抗体反应以及与细胞介导免疫和抗体依赖性细胞毒性反应的相关性

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作者:Sharon E Frey, Jack T Stapleton, Zuhair K Ballas, Wendy L Rasmussen, Thomas M Kaufman, Tammy P Blevins, Travis L Jensen, D Huw Davies, Magdalena Tary-Lehmann, Paul Chaplin, Heather Hill, Johannes B Goll; DMID 09-0002 MVA Vaccine Study Group

Background

There are limited data regarding immunological correlates of protection for the modified vaccinia Ankara (MVA) smallpox vaccine.

Conclusions

MVA elicited antibodies to 15 vaccinia strain antigens representing virion membrane. Antibody responses to 2 proteins strongly increased and significantly correlated with increases in PRNT. Responses to these proteins are potential correlates of protection and may serve as immunogens for future vaccine development. Clinical trials registration: NCT00914732.

Methods

A total of 523 vaccinia-naive subjects were randomized to receive 2 vaccine doses, as lyophilized MVA given subcutaneously, liquid MVA given subcutaneously (liquid-SC group), or liquid MVA given intradermally (liquid-ID group) 28 days apart. For a subset of subjects, antibody-dependent cellular cytotoxicity (ADCC), interferon-γ release enzyme-linked immunospot (ELISPOT), and protein microarray antibody-binding assays were conducted. Protein microarray responses were assessed for correlations with plaque reduction neutralization titer (PRNT), enzyme-linked immunosorbent assay, ADCC, and ELISPOT

Results

MVA elicited significant microarray antibody responses to 15 of 224 antigens, mostly virion membrane proteins, at day 28 or 42, particularly WR113/D8L and WR101H3L. In the liquid-SC group, responses to 9 antigens, including WR113/D8L and WR101/H3L, correlated with PRNT results. Three were correlated in the liquid-ID group. No significant correlations were observed with ELISPOT responses. In the liquid-ID group, WR052/F13L, a membrane glycoprotein, correlated with ADCC responses. Conclusions: MVA elicited antibodies to 15 vaccinia strain antigens representing virion membrane. Antibody responses to 2 proteins strongly increased and significantly correlated with increases in PRNT. Responses to these proteins are potential correlates of protection and may serve as immunogens for future vaccine development. Clinical trials registration: NCT00914732.

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