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Mild/asymptomatic COVID-19 in unvaccinated pregnant mothers impairs neonatal immune responses
Brianna M. Doratt, Suhas Sureshchandra, Heather True, Monica Rincon, Nicole E. Marshall, Ilhem Messaoudi
Brianna M. Doratt, Suhas Sureshchandra, Heather True, Monica Rincon, Nicole E. Marshall, Ilhem Messaoudi
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Research Article COVID-19 Immunology

Mild/asymptomatic COVID-19 in unvaccinated pregnant mothers impairs neonatal immune responses

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Abstract

Maternal SARS-CoV-2 infection triggers placental inflammation and alters cord blood immune cell composition. However, most studies focus on outcomes of severe maternal infection. Therefore, we analyzed cord blood and chorionic villi from newborns of unvaccinated mothers who experienced mild/asymptomatic SARS-CoV-2 infection during pregnancy. We investigated immune cell rewiring using flow cytometry, single-cell RNA sequencing, and functional readouts using ex vivo stimulation with TLR agonists and pathogens. Maternal infection was associated with increased frequency of memory T and B cells and nonclassical monocytes in cord blood. Ex vivo T and B cell responses to stimulation were attenuated, suggesting a tolerogenic state. Maladaptive responses were also observed in cord blood monocytes, where antiviral responses were dampened but responses to bacterial TLRs were increased. Maternal infection was also associated with expansion and activation of placental Hofbauer cells, secreting elevated levels of myeloid cell–recruiting chemokines. Moreover, we reported increased activation of maternally derived monocytes/macrophages in the fetal placenta that were transcriptionally primed for antiviral responses. Our data indicate that even in the absence of vertical transmission or symptoms in the neonate, mild/asymptomatic maternal COVID-19 altered the transcriptional and functional state in fetal immune cells in circulation and in the placenta.

Authors

Brianna M. Doratt, Suhas Sureshchandra, Heather True, Monica Rincon, Nicole E. Marshall, Ilhem Messaoudi

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Figure 2

Impact of maternal mild/asymptomatic SARS-CoV-2 infection on phenotype and frequencies of cord blood immune cells.

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Impact of maternal mild/asymptomatic SARS-CoV-2 infection on phenotype a...
(A) Uniform manifold approximation and projection (UMAP) of 42,486 live immune cells from UCBMCs of control and maternal SARS+ groups (N = 4/group) showing 16 clusters. (B) Violin plots of marker genes used for cluster identification. EM, effector memory; GNLY, high expression of GNLY gene; mDC, myeloid dendritic cell. (C) Box-and-whisker plot comparing cluster frequencies in control and maternal SARS+ groups. Triangles indicate asymptomatic maternal infection. Box plots show the interquartile range (box), median (line), and minimum and maximum (whiskers). (D) Stacked bar graphs of UCB CD4+ and CD8+ T cell subset frequencies in control and maternal SARS+ groups by flow cytometry. (E) Bar graphs comparing KLRG1 and Ki-67 expression within CD4+ and CD8+ T cells between control and maternal SARS+ groups. Triangles indicate asymptomatic maternal infection. (F–I) Stacked bar graphs comparing (F) B cell, (G) CD56bright/dim NK cell, (H) nonclassical and classical monocyte, and (I) dendritic cell subsets between control and maternal SARS+ group. For D–I N = 7/group. Group differences between data sets normally distributed were tested using an unpaired t test (for data sets with equal variances) or an unpaired t test with Welch’s correction (for cases with unequal variances). Data sets not normally distributed were subjected to nonparametric Mann-Whitney test. Error bars represent the data mean ± SEM. (#P < 0.1, *P < 0.05, **P < 0.01, ***P < 0.001.) CM, central memory.

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