Tehran University of Medical Sciences

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Enhancement of the Efficiency of a Dna Vaccine Construct Harboring Hsp70 Mini-Chaperones Linked to Hiv-1 Nef Antigen Using Il-7 Cytokine and Rev Peptide Publisher Pubmed



Tajvidi N ; Bolhassani A ; Heshmati M ; Naseroleslami M ; Hosseini Shokouh SJ
Authors

Source: Microbial Pathogenesis Published:2026


Abstract

Interleukin-7 (IL-7) is essential for the proliferation and maintenance of T lymphocytes, suggesting its potential role as an adjuvant to enhance vaccine efficacy. Furthermore, truncated domains from the amino- or carboxyl-termini of heat shock proteins (HSPs), termed mini-chaperones, are capable of augmenting antigen-targeted T lymphocyte activation in the context of pathogen infections. Additionally, the REV peptide derived from HIV-1 Rev protein was reported to function as a cell-penetrating peptide for the delivery of plasmid DNA. Herein, we assessed the potential of distinct HSP70 domains, along with IL-7 and the REV peptide, to amplify immune responses directed against the HIV-1 Nef antigen and to maintain cytokine secretion against single-cycle HIV-1 (SCR) variant. Our findings revealed that the combination of pVAX-CT-HSP70-Nef with pVAX-IL-7 could significantly increase Th1 and CTL activities through elevated secretion of IFN-γ and Granzyme B compared to other groups, and markedly stimulate IFN-γ production in response to HIV-1 SCR variant. Furthermore, delivery of pVAX-CT-HSP70-Nef combined with pVAX-IL-7 by the REV peptide could substantially increase Granzyme B secretion, boost antigen-specific cellular immune responses, and augment anti-HIV-1 SCR effects through elevated secretion of IFN-γ. Therefore, this vaccination approach holds strong potential as a therapeutic candidate for controlling HIV-1 infection. © 2026 Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies.