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Brain, Behavior, and Immunity|December 19, 2006
Role of the CX3CR1/p38 MAPK pathway in spinal microglia for the development of neuropathic pain following nerve injury-induced cleavage of fractalkineZhi-Ye Zhuang, Yasuhiko Kawasaki, Ping-Heng Tan, et al.Glia|September 7, 2012
Astrocytic CX43 hemichannels and gap junctions play a crucial role in development of chronic neuropathic pain following spinal cord injuryMichael J Chen, Benjamin Kress, Xiaoning Han, et al.The Journal of Clinical Investigation|July 17, 2018
GPR37 regulates macrophage phagocytosis and resolution of inflammatory painSangsu Bang, Ya-Kai Xie, Zhi-Jun Zhang, et al.Anesthesiology|August 14, 2020
Computer-aided Discovery of a New Nav1.7 Inhibitor for Treatment of Pain and ItchSharat Chandra, Zilong Wang, Xueshu Tao, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 16, 2011
Resolvin D2 is a potent endogenous inhibitor for transient receptor potential subtype V1/A1, inflammatory pain, and spinal cord synaptic plasticity in mice: distinct roles of resolvin D1, D2, and E1Chul-Kyu Park, Zhen-Zhong Xu, Tong Liu, et al.Organic & Biomolecular Chemistry|March 9, 2021
A new synthetic protectin D1 analog 3-oxa-PD1<sub>n-3 DPA</sub> reduces neuropathic pain and chronic itch in miceJannicke Irina Nesman, Ouyang Chen, Xin Luo, et al.Frontiers in Immunology|February 27, 2023
SHANK3 in vagal sensory neurons regulates body temperature, systemic inflammation, and sepsisLinlin Zhang, Sangsu Bang, Qianru He, et al.Pain|December 22, 2009
The c-Jun N-terminal kinase 1 (JNK1) in spinal astrocytes is required for the maintenance of bilateral mechanical allodynia under a persistent inflammatory pain conditionYong-Jing Gao, Zhen-Zhong Xu, Yen-Chin Liu, et al.Nature Neuroscience|October 14, 2003
Disruption of ErbB receptor signaling in adult non-myelinating Schwann cells causes progressive sensory lossSuzhen Chen, Carlos Rio, Ru-Rong Ji, et al.Pain|November 15, 2022
Novel proresolving lipid mediator mimetic 3-oxa-PD1n-3 docosapentaenoic acid reduces acute and chronic itch by modulating excitatory and inhibitory synaptic transmission and astroglial secretion of lipocalin-2 in miceKenta Furutani, Ouyang Chen, Aidan McGinnis, et al.Pageof 25