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Human Immunodeficiency Virus C.1086 Envelope gp140 Protein Boosts following DNA/Modified Vaccinia Virus Ankara Vaccination Fail To Enhance Heterologous Anti-V1V2 Antibody Response and Protection against Clade C Simian-Human Immunodeficiency Virus Challenge
Author(s) -
Tiffany M. Styles,
Sailaja Gangadhara,
Pradeep B. J. Reddy,
Sakeenah L. Hicks,
Celia C. LaBranche,
David C. Montefiori,
Cynthia A. Derdeyn,
Pamela A. Kozlowski,
Vijayakumar Velu,
Rama Rao Amara
Publication year - 2019
Publication title -
journal of virology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.617
H-Index - 292
eISSN - 1070-6321
pISSN - 0022-538X
DOI - 10.1128/jvi.00934-19
Subject(s) - biology , virology , vaccinia , heterologous , simian immunodeficiency virus , vaccination , human immunodeficiency virus (hiv) , virus , aids vaccines , genetics , recombinant dna , gene , vaccine trial
HIV, the virus that causes AIDS, is responsible for millions of infections and deaths annually. Despite intense research for the past 25 years, there remains no safe and effective vaccine available. The significance of this work is in identifying the pros and cons of adding a protein boost to an already well-established DNA/MVA HIV vaccine that is currently being tested in the clinic. Characterizing the effects of the protein boost can allow researchers going forward to design vaccines that generate responses that will be more effective against HIV. Our results in rhesus macaques show that boosting with a specific HIV envelope protein does not significantly boost antibody responses that were identified as immune correlates of protection in a moderately successful RV144 HIV vaccine trial in humans and highlight the need for the development of improved HIV envelope immunogens.

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