Abstract
Inflammation in HIV infection is predictive of non-AIDS morbidity and death, higher set point plasma virus load2 and virus acquisition; thus, therapeutic agents are in development to reduce its causes and consequences. However, inflammation may simultaneously confer both detrimental and beneficial effects. This dichotomy is particularly applicable to type I interferons (IFN-I) which, while contributing to innate control of infection4-10, also provide target cells for the virus during acute infection, impair CD4 T-cell recovery, and are associated with disease progression6,7,11-19. Here we manipulated IFN-I signalling in rhesus macaques (Macaca mulatta) during simian immunodeficiency virus (SIV) transmission and acute infection with two complementary in vivo interventions. We show that blockade of the IFN-I receptor caused reduced antiviral gene expression, increased SIV reservoir size and accelerated CD4 T-cell depletion with progression to AIDS despite decreased T-cell activation. In contrast, IFN-α2a administration initially upregulated expression of antiviral genes and prevented systemic infection. However, continued IFN-α2a treatment induced IFN-I desensitization and decreased antiviral gene expression, enabling infection with increased SIV reservoir size and accelerated CD4 T-cell loss. Thus, the timing of IFN-induced innate responses in acute SIV infection profoundly affects overall disease course and outweighs the detrimental consequences of increased immune activation. Yet, the clinical consequences of manipulation of IFN signalling are difficult to predict in vivo and therapeutic interventions in human studies should be approached with caution.
| Original language | English (US) |
|---|---|
| Pages (from-to) | 601-605 |
| Number of pages | 5 |
| Journal | Nature |
| Volume | 511 |
| Issue number | 7511 |
| DOIs | |
| State | Published - 2014 |
Bibliographical note
Funding Information:Acknowledgements We would like to acknowledge A. Zimin for his work in creating the MuSuRCA rhesusassembly, C.Miller for the gift of 6 rhesus macaques andY.Peleg and S. Albeck at the Israel Structure Proteomic Center andG. Jona from Weizmann Institute Biological services for helping with protein production and purification; A. Roque and N. Haining for initial work on the pilot study; N. Modi, D. Ambrozak, R. Koup, M. Ghosh, I. Srivastava, R. Schwartz, F. Villinger, K. Zoon, J. Bekisz, K. Ghneim, A. Filali, R. Sekaly, L. Mach and L. Shen for their assistance on the current project; and A. Somasunderam for additional support. This project was supported by NIH Intramural Funding, federal funds from NCI/NIH Contract HHSN261200800001E, NIH R24 RR017444, NIH AI-076174, I-CORE Program of the Planning and Budgeting Committee and the Israel Science Foundation grant No. 1775/12.
UN SDGs
This output contributes to the following UN Sustainable Development Goals (SDGs)
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SDG 3 Good Health and Well-being
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SDG 5 Gender Equality
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