Mechanical and thermal hyperalgesia (pain hypersensitivity) are cardinal signs of inflammation. Although the mechanism underlying thermal hyperalgesia is well understood, the cellular and molecular basis of mechanical hyperalgesia is poorly described. Here, we have identified a subset of peptidergic C-fiber nociceptors that are insensitive to noxious mechanical stimuli under normal conditions but become sensitized to such stimuli when exposed to the inflammatory mediator nerve growth factor (NGF). Strikingly, NGF did not affect mechanosensitivity of other nociceptors. We show that these mechanoinsensitive "silent" nociceptors are characterized by the expression of the nicotinic acetylcholine receptor subunit alpha-3 (CHRNA3) and that the mechanically gated ion channel PIEZO2 mediates NGF-induced mechanosensitivity in these neurons. Retrograde tracing revealed that CHRNA3(+) nociceptors account for â¼50% of all peptidergic nociceptive afferents innervating visceral organs and deep somatic tissues. Hence, our data suggest that NGF-induced "un-silencing" of CHRNA3(+) nociceptors significantly contributes to the development of mechanical hyperalgesia during inflammation.
Functional and Molecular Characterization of Mechanoinsensitive "Silent" Nociceptors.
对机械不敏感的“沉默”伤害感受器进行功能和分子表征
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作者:Prato Vincenzo, Taberner Francisco J, Hockley James R F, Callejo Gerard, Arcourt Alice, Tazir Bassim, Hammer Leonie, Schad Paulina, Heppenstall Paul A, Smith Ewan S, Lechner Stefan G
| 期刊: | Cell Reports | 影响因子: | 6.900 |
| 时间: | 2017 | 起止号: | 2017 Dec 12; 21(11):3102-3115 |
| doi: | 10.1016/j.celrep.2017.11.066 | 研究方向: | 其它 |
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