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Sensory neurons imprint local macrophage identity via TGF-β [RNA-seq_in_vitro]

GSE250456 Mus musculus Expression profiling by high throughput sequencing 9 samples Submitted 2025/09/12 Platform GPL24247
Summary
Macrophages play integral roles in maintaining homeostasis and function in their tissues of residence. In the skin, prenatally seeded and highly specialized macrophages physically interact with sensory nerves and contribute to their regeneration after injury. However, mechanisms underlying the development and maintenance of this paradigmatic, potentially lifelong commitment of macrophages to nociceptors remain largely elusive. Here, we found that infiltrating myeloid progenitor cells approached the sprouting axons of sensory nerves and gradually adopted a nerve-associated macrophage-like profile. This change in identity was steered and maintained by the immediate microenvironment, in particular TGF-β, which was produced by neurons and locally activated by the physical interaction with nerves and integrin-mediated cleavage. Following injury, TGF-β driven specification of macrophages essentially supported nerve regeneration. Overall, we identified TGF-β as a central mediator governing local imprinting and long-term specialization of macrophages in the skin, providing insights into the bidirectional communication between macrophages and sensory nerves.
Published in
Sensory neurons shape local macrophage identity via TGF-β signaling
Kolter J, Döring CL, Sarout S et al. · Immunity 2025 · PMID 40914152 · doi:10.1016/j.immuni.2025.08.004
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Also filed as BioProject PRJNA1054106 and SRA study SRP478626. Searching any of these in the dataset finder brings you back here.

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