Shaoling Wu
Sun Yat-sen University
37 Papers
38 Citations
Shaoling Wu is an academic researcher from Sun Yat-sen University. The author has contributed to research in topics: Medicine & Neuropathic pain. The author has an hindex of 12, co-authored 27 publications.
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Papers
Comparing Biofeedback With Active Exercise and Passive Treatment for the Management of Work-Related Neck and Shoulder Pain: A Randomized Controlled Trial
TL;DR: Six weeks of biofeedback training produced more favorable outcomes in reducing pain and improving muscle activation of neck muscles in patients with work-related neck and shoulder pain.
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TNF-α/STAT3 pathway epigenetically upregulates Nav1.6 expression in DRG and contributes to neuropathic pain induced by L5-VRT.
Huan-Huan Ding,Su-Bo Zhang,You-You Lv,Chao Ma,Meng Liu,Kui-Bo Zhang,Xiang-Cai Ruan,Jia-You Wei,Wen-Jun Xin,Shaoling Wu +9 more
TL;DR: A new mechanism for Nav1.6 upregulation involving TNF-α/STAT3 pathway activation and subsequent STAT3-mediated histone H4 hyperacetylation in the Scn8a promoter region in DRG, which contributed to L5-VRT-induced neuropathic pain is suggested.
Palmitoylation of δ-catenin promotes kinesin-mediated membrane trafficking of Nav1.6 in sensory neurons to promote neuropathic pain
Xiao-Long Zhang,Huan-Huan Ding,Ting Xu,Meng Liu,Chao Ma,Shaoling Wu,Jia-You Wei,Cui-Cui Liu,Su-Bo Zhang,Wen-Jun Xin +9 more
TL;DR: It is suggested that a palmitoylation-mediated KIF3A/δ-catenin/Nav1.6 complex enhances the transmission of mechanical and nociceptive signals; thus, blocking this mechanism may be therapeutic in patients with neuropathic pain.
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mir-500-Mediated GAD67 Downregulation Contributes to Neuropathic Pain.
Zhen-Zhen Huang,Jia-You Wei,Handong Ouyang,Dai Li,Ting Xu,Shaoling Wu,Xiao-Long Zhang,Cui-Cui Liu,Chao Ma,Wen-Jun Xin +9 more
TL;DR: This study illustrates for the first time a mir-500-mediated mechanism underlying spinal GABAergic dysfunction and sensitized pain behavior in neuropathic pain induced by the chemotherapeutic drug paclitaxel or L5 ventral root transection, which sheds light on the development of novel therapeutic options for neuropathicPain.
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Running exercise alleviates pain and promotes cell proliferation in a rat model of intervertebral disc degeneration.
Shuo Luan,Qing Wan,Hai-Jie Luo,Xiao Li,Songjian Ke,Caina Lin,Yuanyuan Wu,Shaoling Wu,Chao Ma +8 more
TL;DR: Results suggest that running exercise might alleviate the mechanical allodynia induced by intradiscal CFA injection via disc repair and cell proliferation, which provides new evidence for future clinical use.
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