Osteoclast-derived extracellular vesicles are implicated in sensory neurons sprouting through the activation of epidermal growth factor signaling
Bone pain; Epidermal growth factor receptor (EGFR/ErbB2) signaling; Extracellular vesicles; Neuronal electrophysiology; Osteoclast secretome; Sensory neurons sprouting.- Cell Biosci
- 7.5
- 2022 Aug 14;12(1):127.
- Mouse
- 抗体芯片
- 药物研发
- 药物研发
- 其它细胞
- 生长因子
- EGF R,PDGF R alpha,VEGF R3,ErbB2,PDGF R beta,MuSK,ErbB3,SCF R,EphA1,ErbB4,Flt-3,EphA2,FGF R2 (IIIc),M-CSF R,EphA3,FGF R3,c-Ret,EphA6,FGF R4,Tie-1,EphA7,Insulin R,Tie-2,EphA8,IGF-I R,TrkA,EphB1,Axl,TrkB,EphB2,DtK,TrkC,EphB4,Mer,VEGF R1,EphB6,HGF R,VEGF R2,,MSP R
相关货号
LXAM040-1
Abstract
Background:Different pathologies, affecting the skeletal system, were reported to display altered bone and/or cartilage innervation profiles leading to the deregulation of the tissue homeostasis. The patterning of peripheral innervation is achieved through the tissue-specific expression of attractive or repulsive axonal guidance cues in specific space and time frames. During the last decade, emerging findings attributed to the extracellular vesicles (EV) trading a central role in peripheral tissue innervation. However, to date, the contribution of EV in controlling bone innervation is totally unknown. Results:Here we show that sensory neurons outgrowth induced by the bone resorbing cells-osteoclasts-is promoted by osteoclast-derived EV. The EV induced axonal growth is achieved by targeting epidermal growth factor receptor (EGFR)/ErbB2 signaling/protein kinase C phosphorylation in sensory neurons. In addition, our data also indicate that osteoclasts promote sensory neurons electrophysiological activity reflecting a possible pathway in nerve sensitization in the bone microenvironment, however this effect is EV independent. Conclusions:Overall, these results identify a new mechanism of sensory bone innervation regulation and shed the light on the role of osteoclast-derived EV in shaping/guiding bone sensory innervation. These findings provide opportunities for exploitation of osteoclast-derived EV based strategies to prevent and/or mitigate pathological uncontrolled bone innervation.Keywords:Bone pain; Epidermal growth factor receptor (EGFR/ErbB2) signaling; Extracellular vesicles; Neuronal electrophysiology; Osteoclast secretome; Sensory neurons sprouting.
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