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Pudwell, J.

Publications and source records attributed to Pudwell, J..

2 recordsLinked to original sources

Prenatal fentanyl and Δ9-tetrahydrocannabinol exposure disrupt placental function and fetal growth in a mouse model of multidrug use

Opioid and cannabis co-use during pregnancy is increasingly common, yet the placental mechanisms linking combined exposure to adverse fetal outcomes remain poorly defined. Using a controlled mouse model of gestational drug exposure, we tested how fentanyl, {Delta}9-tetrahydrocannabinol (THC), or their combination altered placental structure, immune signaling, and gene expression and how these changes related to fetal growth. Drug exposure produced fetal growth restriction and reduced placental efficiency, with the greatest impairment in the combined fentanyl+THC group. Placental alterations were detectable by mid-gestation, when fentanyl exposure increased nucleated red blood cells within the labyrinth, consistent with hypoxic stress. By term, placentas showed compartment-specific remodeling, with THC selectively expanding the labyrinth and combined fentanyl+THC exposure increasing decidual area. Labyrinth composition and proliferative activity were altered, ultrastructural analysis revealed disruption of the maternal-fetal exchange interface, and placental interleukin-10 and interferon-{beta} levels were reduced across exposure groups. Transcriptomic analyses identified suppression of innate immune and antiviral defense pathways together with treatment-specific stress responses, and integration of placental gene expression with fetal weight showed coordinated repression of vascular and developmental regulators and activation of hypoxia- and metabolic stress-associated genes. These findings identify the placenta as a key mediator of adverse fetal outcomes associated with prenatal polysubstance exposure.

molecular biology↗

An investigation of the IL-23/Th17 axis and transcriptomic profiles of T helper subsets in endometriosis

Endometriosis (EMS) is a chronic inflammatory disease characterized by ectopic endometrial-like tissue growth and immune dysregulation. Aberrant T cell responses are implicated in EMS pathogenesis, however, functional reprogramming of T helper (Th) subsets across disease stages remain unclear. We profiled systemic and local immune mediators (cytokines/chemokines) and performed bulk RNA sequencing to comprehensively characterize Th1, Th1/17, and Th17 cell subsets from EMS patients and healthy controls. Across patient plasma, peritoneal fluid (PF), and matched eutopic and ectopic tissues, we observed systemic and local cytokine/chemokine alterations, including elevated IL-6 (plasma), FLT-3L and G-CSF (eutopic), and IL-1RA and IL-23 (p40; PF) in severe-stage EMS. Flow cytometry depicted elevated pathogenic Th17 cells in patient PF compared to matched non-pathogenic Th17 and Treg cell subsets. Additionally, circulating Th17 cells were increased in patients with mild (stages I-II) relative to severe (stages III-IV) EMS. RNA sequencing revealed extensive Th subset reprogramming in EMS, most predominately in Th17 cells (2,220 DEGs). Collectively, we reveal significant immune remodeling in EMS and highlight a distinct, aberrant Th17 cell phenotype. Results support repurposing of IL-23- and IL-17-targeted therapeutics, already effectively implemented in other chronic inflammatory diseases, to broaden therapeutic options for EMS and associated comorbidities.

immunology↗