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Increased IL-6 expression precedes reliable viral detection in the rhesus macaque brain during acute SIV infection
Raja Mohan Gopalakrishnan, Malika Aid, Noe B. Mercado, Caitlin Davis, Shaily Malik, Emma Geiger, Valerie Varner, Rhianna Jones, Steven E. Bosinger, Cesar Piedra-Mora, Amanda J. Martinot, Dan H. Barouch, R. Keith Reeves, C. Sabrina Tan
Raja Mohan Gopalakrishnan, Malika Aid, Noe B. Mercado, Caitlin Davis, Shaily Malik, Emma Geiger, Valerie Varner, Rhianna Jones, Steven E. Bosinger, Cesar Piedra-Mora, Amanda J. Martinot, Dan H. Barouch, R. Keith Reeves, C. Sabrina Tan
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Research Article AIDS/HIV Neuroscience

Increased IL-6 expression precedes reliable viral detection in the rhesus macaque brain during acute SIV infection

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Abstract

Knowledge of immune activation in the brain during acute HIV infection is crucial for the prevention and treatment of HIV-associated neurological disorders. We determined regional brain (basal ganglia, thalamus, and frontal cortex) immune and virological profiles at 7 and 14 days post infection (dpi) with SIVmac239 in rhesus macaques. The basal ganglia and thalamus had detectable viruses earlier (7 dpi) than the frontal cortex (14 dpi) and contained higher quantities of viruses than the latter. Increased immune activation of astrocytes and significant infiltration of macrophages in the thalamus at 14 dpi coincided with elevated plasma viral load, and SIV colocalized only within macrophages. RNA signatures of proinflammatory responses, including IL-6, were detected at 7 dpi in microglia and interestingly, preceded reliable detection of virus in tissues and were maintained in the chronically infected macaques. Countering the proinflammatory response, the antiinflammatory response was not detected until increased TGF-β expression was found in perivascular macrophages at 14 dpi. But this response was not detected in chronic infection. Our data provide evidence that the interplay of acute proinflammatory and antiinflammatory responses in the brain likely contributed to the overt neuroinflammation, where the immune activation preceded reliable viral detection.

Authors

Raja Mohan Gopalakrishnan, Malika Aid, Noe B. Mercado, Caitlin Davis, Shaily Malik, Emma Geiger, Valerie Varner, Rhianna Jones, Steven E. Bosinger, Cesar Piedra-Mora, Amanda J. Martinot, Dan H. Barouch, R. Keith Reeves, C. Sabrina Tan

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Figure 1

Quantitation of SIV viral RNA+ cells in the macaque brain and colocalization of SIV with perivascular macrophages.

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Quantitation of SIV viral RNA+ cells in the macaque brain and colocaliza...
(A) SIV viral RNA+ cells in frontal cortex, basal ganglia, and thalamus of uninfected control, acutely infected (7 and 14 dpi), and chronically infected macaque brains were detected by combining RNAscope with immunofluorescence and counted manually by visualizing slides under a light microscope. Each data point indicates 1 animal, and the associated numerical value is the average number of SIV+ cells counted in 15 high-powered fields (HPFs) at 40× under light microscope. (B and C) SIV in frontal cortex of macaque brain colocalized with perivascular CD163+ macrophages but not with CD3+ cells. RNAscope SIV-probe conjugated with FITC (green) colocalized with perivascular macrophages (red) stained with Alexa Flour 647–conjugated CD163 antibodies (B) and did not colocalize with CD3+ cells (red) stained with Alexa Fluor 647–conjugated CD3 antibodies (C). Data are presented as mean ± SD. Statistical significance was calculated using a nonparametric Kruskal-Wallis test and multiple comparisons were assessed using Dunn’s post hoc analysis. *P ≤ 0.05. n = 3 (control, 7 dpi, chronic), n = 5 (14 dpi) (A). Scale bar: 50 μm (B and C).

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