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Immune perturbation following SHIV infection is greater in newborn macaques than in infants
Mariya B. Shapiro, Tracy Ordonez, Shilpi Pandey, Eisa Mahyari, Kosiso Onwuzu, Jason Reed, Heather Sidener, Jeremy Smedley, Lois M. Colgin, Amanda Johnson, Anne D. Lewis, Benjamin Bimber, Jonah B. Sacha, Ann J. Hessell, Nancy L. Haigwood
Mariya B. Shapiro, Tracy Ordonez, Shilpi Pandey, Eisa Mahyari, Kosiso Onwuzu, Jason Reed, Heather Sidener, Jeremy Smedley, Lois M. Colgin, Amanda Johnson, Anne D. Lewis, Benjamin Bimber, Jonah B. Sacha, Ann J. Hessell, Nancy L. Haigwood
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Research Article AIDS/HIV Immunology

Immune perturbation following SHIV infection is greater in newborn macaques than in infants

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Abstract

Transmission of HIV-1 to newborns and infants remains high, with 130,000 new infections in 2022 in resource-limited settings. Half of HIV-infected newborns, if untreated, progress to disease and death within 2 years. While immunologic immaturity likely promotes pathogenesis and poor viral control, little is known about immune damage in newborns and infants. Here we examined pathologic, virologic, and immunologic outcomes in rhesus macaques exposed to pathogenic simian-human immunodeficiency virus (SHIV) at 1–2 weeks, defined as newborns, or at 4 months of age, considered infants. Kinetics of plasma viremia and lymph node seeding DNA were indistinguishable in newborns and infants, but levels of viral DNA in gut and lymphoid tissues 6–10 weeks after infection were significantly higher in newborns versus either infant or adult macaques. Two of 6 newborns with the highest viral seeding required euthanasia at 25 days. We observed age-dependent alterations in leukocyte subsets and gene expression. Compared with infants, newborns had stronger skewing of monocytes and CD8+ T cells toward differentiated subsets and little evidence of type I interferon responses by transcriptomic analyses. Thus, SHIV infection reveals distinct immunological alterations in newborn and infant macaques. These studies lay the groundwork for understanding how immune maturation affects pathogenesis in pediatric HIV-1 infection.

Authors

Mariya B. Shapiro, Tracy Ordonez, Shilpi Pandey, Eisa Mahyari, Kosiso Onwuzu, Jason Reed, Heather Sidener, Jeremy Smedley, Lois M. Colgin, Amanda Johnson, Anne D. Lewis, Benjamin Bimber, Jonah B. Sacha, Ann J. Hessell, Nancy L. Haigwood

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Figure 2

Viral loads during the acute phase following high-dose challenge with SHIV do not vary by age at time of exposure in infant macaques.

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Viral loads during the acute phase following high-dose challenge with SH...
(A) Top, plasma viral load (PVL) data for newborns (exposed to SHIVSF162P3 at 1–2 weeks of age). Bottom, PVL data for infants (exposed to SHIVSF162P3 at 15–16 weeks of age). Individual animals are represented by unique symbols. Symbols with darker colors indicate viral load in cerebrospinal fluid (CSF) at necropsy. (B) PVL between newborns and infants, with data censored at 6 weeks and time points excluded from analysis if PVL was measured for only 1 group. Data represent mean ± SEM. (C) Area under the curve was computed by taking the mean PVL measurement at each time point during the first 6 weeks after SHIV exposure, resulting in no significant difference between the groups (unpaired t test with Welch’s correction, 2-tailed P > 0.05, n = 6 animals per group).

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