Mapping somatosensory afferent circuitry to bone identifies neurotrophic signals required for fracture healing.

Xu, Mingxin; Li, Zhao; Thottappillil, Neelima; Cherief, Masnsen; Zhu, Manyu; Xing, Xin; Gomez-Salazar, Mario; Rao, Chunbao et al. · Science · 2026

basic_science · Level V

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Abstract

The pain associated with bone fracture is mediated by somatosensory neurons, which also appear to be required to initiate bone regeneration. To characterize neuroanatomical circuitry mediating skeletal nociception and regeneration, we profiled dorsal root ganglia (DRG) neurons innervating murine bones using single-cell transcriptomics before and after fracture. CGRP<sup>+</sup> and Aβ-Field LTMR neurons were the most represented classes of bone-innervating neurons. Dynamic changes in sensory neuron response to injury reflected the phasic nature of bone repair, including expression of morphogens such as <i>Tgfb1</i>, <i>Fgf9</i>, and <i>Shh</i>. Innervation loss resulted in poor bone repair and was associated with defective mesenchymal cell proliferation and osteodifferentiation. Finally, we identified fibroblast growth factor 9 (FGF9) as a major regulator of fracture repair that could be leveraged to promote bone repair.

Medical subject headings