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Published on: October 10, 2025
Single-cell sequencing uncovers sensory neuron-mediated CGRP signaling as a driver of sarcoma progression
Sowmya Ramesh1, Qizhi Qin1, Zhao Li1
1Department of Pathology, Johns Hopkins University, Baltimore, MD 21205.
Abstract:
Bone pain is a presenting feature of bone cancers such as osteosarcoma (OS), relayed by skeletal-innervating peripheral afferent neurons. Potential functions of tumor-associated sensory neurons in bone cancers beyond pain sensation are unknown. To uncover neural regulatory functions, a chemical-genetic approach in mice with a knock-in allele for TrkA was used to functionally perturb sensory nerve innervation during OS growth and disease progression. TrkA inhibition in transgenic mice led to significant reductions in sarcoma-associated sensory innervation and vascularization, skewed tumor associated macrophage polarization, reduced tumor growth and metastasis, and prolonged overall survival. Single-cell transcriptomics revealed that sarcoma denervation was associated with phenotypic alterations in both OS tumor cells and cells within the tumor microenvironment, and with reduced calcitonin gene-related peptide (CGRP) and vascular endothelial growth factor (VEGF) signaling. Multimodal and multiomics analyses of human OS bone samples further implicated peripheral innervation and neurotrophin signaling in OS tumor biology. Next and in two parallel approaches to inhibit nerve ingrowth, we repurposed FDA-approved bupivacaine liposomes and separately blocked CGRP signaling using FDA-approved Rimegepant. Both strategies led to significant reductions in sarcoma growth, vascularity, and sarcoma-induced hyperalgesia. In sum, TrkA-expressing peripheral neurons positively regulate key aspects of OS progression and sensory neural inhibition disrupts CGRP signaling within the sarcoma microenvironment leading to significantly reduced tumor growth and improved survival. These data suggest that interventions to prevent pathological innervation of OS represent an adjunctive therapy to improve clinical outcomes and survival.
Insights
Targeting nerve growth in osteosarcoma (OS) reduces tumor progression and metastasis. Inhibiting TrkA-expressing sensory neurons and calcitonin gene-related peptide (CGRP) signaling significantly improves survival in bone cancer models.
Area of Science:
- Oncology
- Neuroscience
- Molecular Biology
Background:
- Bone pain is a common symptom of osteosarcoma (OS), often mediated by sensory neurons.
- The role of tumor-associated sensory neurons in bone cancer beyond pain is not well understood.
Purpose of the Study:
- To investigate the neural regulatory functions of sensory neurons in osteosarcoma progression.
- To explore therapeutic strategies targeting nerve ingrowth in OS.
Main Methods:
- Utilized a chemical-genetic approach in mice with TrkA knock-in alleles to inhibit sensory nerve function during OS.
- Employed single-cell transcriptomics and multiomics analyses on mouse and human OS samples.
- Repurposed FDA-approved bupivacaine liposomes and Rimegepant to inhibit nerve ingrowth and CGRP signaling.
Main Results:
- TrkA inhibition significantly reduced OS-associated sensory innervation, vascularization, tumor growth, and metastasis, while prolonging survival.
- Denervation altered tumor cell and microenvironment phenotypes, reducing calcitonin gene-related peptide (CGRP) and vascular endothelial growth factor (VEGF) signaling.
- Both bupivacaine liposomes and CGRP inhibition strategies markedly decreased sarcoma growth, vascularity, and hyperalgesia.
Conclusions:
- TrkA-expressing peripheral neurons positively regulate key aspects of osteosarcoma progression.
- Inhibiting sensory neural signaling, specifically CGRP, disrupts the sarcoma microenvironment, reducing tumor growth and improving survival.
- Targeting pathological innervation of OS offers a potential adjunctive therapy to enhance clinical outcomes and survival.
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