Longitudinal bioluminescent imaging of HIV-1 infection during antiretroviral therapy and treatment interruption in humanized mice

被引:17
作者
Ventura, John D. [1 ]
Beloor, Jagadish [2 ]
Allen, Edward [3 ]
Zhang, Tongyu [4 ]
Haugh, Kelsey A. [1 ]
Uchil, Pradeep D. [1 ]
Ochsenbauer, Christina [5 ]
Kieffer, Collin [4 ]
Kumar, Priti [2 ]
Hope, Thomas J. [3 ]
Mothes, Walther [1 ]
机构
[1] Yale Univ, Sch Med, Dept Microbial Pathogenesis, New Haven, CT 06520 USA
[2] Yale Univ, Sch Med, Dept Internal Med, New Haven, CT 06510 USA
[3] Northwestern Univ, Feinberg Sch Med, Dept Cellular & Mol Biol, Chicago, IL 60611 USA
[4] Univ Illinois, Coll Liberal Arts & Sci, Sch Mol & Cellular Biol, Urbana, IL USA
[5] Univ Alabama Birmingham, Dept Med, Birmingham, W Midlands, England
基金
美国国家卫生研究院;
关键词
IMMUNODEFICIENCY-VIRUS TYPE-1; CLASS-I MOLECULES; PHOTODYNAMIC THERAPY; DOWN-REGULATION; NEF; REPLICATION; REPORTER; CELLS; MOUSE; CD4;
D O I
10.1371/journal.ppat.1008161
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Author summary Non-invasive bioluminescent imaging (NIBLI) in small animals allows for in vivo longitudinal imaging of infection spread and pathogenesis. We have taken advantage of the small luciferase reporter protein, Nanoluciferase (Nluc), to generate a replication-competent HIV-1 reporter virus to allow for NIBLI of viral infection in humanized mice. NIBLI via Nluc enabled us to directly visualize longitudinal spreading patterns before, during, and after interruption of daily doses of combined antiretroviral therapy (cART). We observed that rebounding infection often emerged in tissue regions originally associated with infected cells prior to cART treatment. Thus, Nluc-based NIBLI of HIV-1 infection can be used as an experimental tool to study events involved in viral dissemination and spread from initial sites of infection to draining lymphoid tissues before and after cART suppression, as well as locate infected tissues for subsequent cellular characterization of HIV-1 infected cells. Non-invasive bioluminescent imaging (NIBLI) of HIV-1 infection dynamics allows for real-time monitoring of viral spread and the localization of infected cell populations in living animals. In this report, we describe full-length replication-competent GFP and Nanoluciferase (Nluc) expressing HIV-1 reporter viruses from two clinical transmitted / founder (T/F) strains: TRJO.c and Q23.BG505. By infecting humanized mice with these HIV-1 T/F reporter viruses, we were able to directly monitor longitudinal viral spread at whole-animal resolution via NIBLI at a sensitivity of as few as 30-50 infected cells. Bioluminescent signal strongly correlated with HIV-1 infection and responded proportionally to virus suppression in vivo in animals treated daily with a combination antiretroviral therapy (cART) regimen. Longitudinal NIBLI following cART withdrawal visualized tissue-sites that harbored virus during infection recrudescence. Notably, we observed rebounding infection in the same lymphoid tissues where infection was first observed prior to ART treatment. Our work demonstrates the utility of our system for studying in vivo viral infection dynamics and identifying infected tissue regions for subsequent analyses.
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页数:29
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共 44 条
[1]   Human immunodeficiency virus type 1 Nef potently induces a in primary human brain microvascular endothelial cells via the activation of caspases [J].
Acheampong, EA ;
Parveen, Z ;
Muthoga, LW ;
Kalayeh, M ;
Mukhtar, M ;
Pomerantz, RJ .
JOURNAL OF VIROLOGY, 2005, 79 (07) :4257-4269
[2]  
Akkina R, 2016, AIDS RES HUM RETROV, V32, P109, DOI [10.1089/aid.2015.0258, 10.1089/AID.2015.0258]
[3]   Optimized Replicating Renilla Luciferase Reporter HIV-1 Utilizing Novel Internal Ribosome Entry Site Elements for Native Nef Expression and Function [J].
Alberti, Michael O. ;
Jones, Jennifer J. ;
Miglietta, Riccardo ;
Ding, Haitao ;
Bakshi, Rakesh K. ;
Edmonds, Tara G. ;
Kappes, John C. ;
Ochsenbauer, Christina .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 2015, 31 (12) :1278-1296
[4]   Susceptibility of the wild-derived inbred CAST/Ei mouse to infection by orthopoxviruses analyzed by live bioluminescence imaging [J].
Americo, Jeffrey L. ;
Sood, Cindy L. ;
Cotter, Catherine A. ;
Vogel, Jodi L. ;
Kristie, Thomas M. ;
Moss, Bernard ;
Earl, Patricia L. .
VIROLOGY, 2014, 449 :120-132
[5]   Phenotypic Correlates of HIV-1 Macrophage Tropism [J].
Arrildt, Kathryn T. ;
LaBranche, Celia C. ;
Joseph, Sarah B. ;
Dukhovlinova, Elena N. ;
Graham, William D. ;
Ping, Li-Hua ;
Schnell, Gretja ;
Sturdevant, Christa B. ;
Kincer, Laura P. ;
Mallewa, Macpherson ;
Heyderman, Robert S. ;
Van Rie, Annelies ;
Cohen, Myron S. ;
Spudich, Serena ;
Price, Richard W. ;
Montefiori, David C. ;
Swanstrom, Ronald .
JOURNAL OF VIROLOGY, 2015, 89 (22) :11294-11311
[6]   In-vivo monitoring of infectious diseases in living animals using bioluminescence imaging [J].
Avci, Pinar ;
Karimi, Mahdi ;
Sadasivam, Magesh ;
Antunes-Melo, Wanessa C. ;
Carrasco, Elisa ;
Hamblin, Michael R. .
VIRULENCE, 2018, 9 (01) :28-63
[7]   Macrophage Infection via Selective Capture of HIV-1-Infected CD4+ T Cells [J].
Baxter, Amy E. ;
Russell, Rebecca A. ;
Duncan, Christopher J. A. ;
Moore, Michael D. ;
Willberg, Christian B. ;
Pablos, Jose L. ;
Finzi, Andres ;
Kaufmann, Daniel E. ;
Ochsenbauer, Christina ;
Kappes, John C. ;
Groot, Fedde ;
Sattentau, Quentin J. .
CELL HOST & MICROBE, 2014, 16 (06) :711-721
[8]   T Cell-Macrophage Fusion Triggers Multinucleated Giant Cell Formation for HIV-1 Spreading [J].
Bracq, Lucie ;
Xie, Maorong ;
Lambele, Marie ;
Vu, Lan-Trang ;
Matz, Julie ;
Schmitt, Alain ;
Delon, Jerome ;
Zhou, Paul ;
Randriamampita, Clotilde ;
Bouchet, Jerome ;
Benichou, Serge .
JOURNAL OF VIROLOGY, 2017, 91 (24)
[9]   Cell Biology of HIV-1 Infection of Macrophages [J].
Carter, Carol A. ;
Ehrlich, Lorna S. .
ANNUAL REVIEW OF MICROBIOLOGY, 2008, 62 :425-443
[10]   Monitoring photodynamic therapy of localized infections by bioluminescence imaging of genetically engineered bacteria [J].
Demidova, TN ;
Gad, F ;
Zahra, T ;
Francis, KP ;
Hamblin, MR .
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY, 2005, 81 (01) :15-25