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Aberrant microglial responses shape hypothalamic circuits in anorexia nervosa

Created on 25 Sep 2026

Authors

Xu, J., Erskine, E., Eramo, B., Zimmer, K., Camoglio, C., Chaudhary, M., Feng, T., Orhan, F., Welch, E., Selander, L., Lavebratt, C., Hokfelt, T., Schalling, M., S, S., Sellgren-Majkowitz, C., Nilsson, I.

Abstract

Multimodal data indicates that microglia contribute to the pathophysiology of anorexia nervosa (AN). Here, we investigated microglial modulation of hypothalamic circuits, key regulators of energy balance, hypothesising an implication in the prolonged starvation and low body weight of AN. First, we generated microglia as well as hypothalamic and cortical neurons from patient-derived induced pluripotent stem cells (iPSCs) to discover upregulation of synapse-related genes in hypothalamic neurons, reduced microglial uptake of hypothalamic synaptic structures, and a microglial unresponsivness to the satiety hormone glucagon-like peptide-1. In an AN animal model (anx/anx mouse), spatial transcriptomics indicated hypothalamic microglial activation and disrupted microglia-synapse signaling. Despite an increased microglia density in both the arcuate nucleus (ARC) and the dorsomedial hypothalamus region (DMH), microglia displayed a decreased per cell uptake of synaptic material in Arc. Together, these data suggest that microglial responses shape hypothalamic circuits with possible implications for the maintained negative energy balance of AN.

Preprint server: bioRxiv
The authors list and abstract were imported from bioRxiv on 25 Sep 2026.

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