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Avila, U.

Publications and source records attributed to Avila, U..

2 recordsLinked to original sources

Spontaneous Pregravid Obesity Reshapes Fetal Immune Ontogeny in a Nonhuman Primate Model

Pregravid obesity is associated with longterm immune alterations in the offspring; however, the mechanisms remain poorly defined. To address this gap, we investigated the impact of spontaneous pregravid obesity, independent of obesogenic diet, on fetal immune ontogeny in a rhesus macaque model. Using spectral flow cytometry, multiplex cytokine profiling, functional stimulation assays, and singlecell RNA sequencing, we profiled immune composition, function, transcriptional profiles, and intercellular communication in umbilical cord blood as well as fetal spleen and lung. Pregravid obesity was associated with altered fetal organ growth, elevated inflammatory mediators, altered frequencies of immune cell populations, and hyperresponsiveness to stimulation by splenic and lung leukocytes. Singlecell transcriptomic analyses revealed tissuespecific reprogramming of innate immune cells, including heightened inflammatory, migratory, and metabolic signatures with impaired antigen presentation. Moreover, there was evidence of impaired T cell differentiation, premature effector differentiation, and B cell dysfunction. Cell-cell communication analysis identified loss of tolerogenic signaling and enhanced proinflammatory pathways across spleen and lung myeloid cells. These findings demonstrate that spontaneous pregravid obesity fundamentally reshapes fetal circulating and tissueresident immune cells, providing mechanistic insight into the increased susceptibility to infection, respiratory diseases, and immune dysregulation observed in offspring of mothers with obesity.

immunology↗

Maternal Obesity Reprograms Differentiation Trajectories of Fetal Hematopoietic Stem and Progenitor Cells Through Altered Inflammatory Signaling

BackgroundMaternal obesity is a global health challenge with profound consequences for offspring health. While its impact on metabolic programming has been widely studied, far less is known about how maternal obesity shapes the fetal immune system. The fetal bone marrow (FBM) is the central site of hematopoietic stem and progenitor cell (HSPC) development, and disruptions in this niche can have lifelong effects on immunity, infection susceptibility, and inflammatory disease risk. In this study, we examined FBM hematopoiesis in a nonhuman primate model of spontaneous maternal obesity. MethodsUsing spectral flow cytometry, single-cell RNA sequencing, and functional differentiation assays, we mapped progenitor composition, lineage trajectories, and immune function in offspring exposed to maternal obesity compared with lean controls. These complementary approaches allowed us to capture cellular frequencies and transcriptional programs, while trajectory and signaling analyses provided insight into how progenitor maturation and intercellular communication are disrupted by maternal obesity. ResultsOur findings reveal that maternal obesity decreases CD34+ HSPCs and common lymphoid progenitor populations, while expanding megakaryocyte-erythroid and granulocyte-monocyte progenitors. Pseudotime analysis demonstrated altered maturation, with cells accumulating at early differentiation states. Transcriptional profiling uncovered a strong inflammatory bias, with myeloid progenitors upregulating alarmins, interferon-stimulated genes, and proinflammatory mediators. Functionally, monocytes derived from obese FBM showed impaired migratory and colony-stimulating capacity, coupled with exaggerated TNF responses to LPS stimulation. ConclusionTogether, these results demonstrate that maternal obesity, even in the absence of obesogenic diet, disrupts fetal bone marrow hematopoiesis by altered HSPC maturation, reprogramming lineage trajectories, and inducing inflammatory bias.

immunology↗