iScience (Apr 2024)

Inflammatory, metabolic, and sex-dependent gene-regulatory dynamics of microglia and macrophages in neonatal hippocampus after hypoxia-ischemia

  • Elena Di Martino,
  • Anoop Ambikan,
  • Daniel Ramsköld,
  • Takashi Umekawa,
  • Sarantis Giatrellis,
  • Davide Vacondio,
  • Alejandro Lastra Romero,
  • Marta Gómez Galán,
  • Rickard Sandberg,
  • Ulrika Ådén,
  • Volker M. Lauschke,
  • Ujjwal Neogi,
  • Klas Blomgren,
  • Julianna Kele

Journal volume & issue
Vol. 27, no. 4
p. 109346

Abstract

Read online

Summary: Neonatal hypoxia-ischemia (HI) is a major cause of perinatal death and long-term disabilities worldwide. Post-ischemic neuroinflammation plays a pivotal role in HI pathophysiology. In the present study, we investigated the temporal dynamics of microglia (CX3CR1GFP/+) and infiltrating macrophages (CCR2RFP/+) in the hippocampi of mice subjected to HI at postnatal day 9. Using inflammatory pathway and transcription factor (TF) analyses, we identified a distinct post-ischemic response in CCR2RFP/+ cells characterized by differential gene expression in sensome, homeostatic, matrisome, lipid metabolic, and inflammatory molecular signatures. Three days after injury, transcriptomic signatures of CX3CR1GFP/+ and CCR2RFP/+ cells isolated from hippocampi showed a partial convergence. Interestingly, microglia-specific genes in CX3CR1GFP/+ cells showed a sexual dimorphism, where expression returned to control levels in males but not in females during the experimental time frame. These results highlight the importance of further investigations on metabolic rewiring to pave the way for future interventions in asphyxiated neonates.

Keywords