Ontology highlight
ABSTRACT:
SUBMITTER: Ni S
PROVIDER: S-EPMC6904550 | biostudies-literature | 2019 Dec
REPOSITORIES: biostudies-literature
Ni Shuangfei S Ling Zemin Z Wang Xiao X Cao Yong Y Wu Tianding T Deng Ruoxian R Crane Janet L JL Skolasky Richard R Demehri Shadpour S Zhen Gehua G Jain Amit A Wu Panfeng P Pan Dayu D Hu Bo B Lyu Xiao X Li Yusheng Y Chen Hao H Qi Huabin H Guan Yun Y Dong Xinzhong X Wan Mei M Zou Xuenong X Lu Hongbin H Hu Jianzhong J Cao Xu X
Nature communications 20191210 1
Spinal pain is a major clinical problem, however, its origins and underlying mechanisms remain unclear. Here we report that in mice, osteoclasts induce sensory innervation in the porous endplates which contributes to spinal hypersensitivity in mice. Sensory innervation of the porous areas of sclerotic endplates in mice was confirmed. Lumbar spine instability (LSI), or aging, induces spinal hypersensitivity in mice. In these conditions, we show that there are elevated levels of PGE2 which activat ...[more]