[1]Raja SN, Carr DB, Cohen M, et al. The revised international association for the study of pain definition of pain: concepts, challenges, and compromises [J]. Pain, 2020, 161(9): 1976-1982.
[2]Türp JC, Kowalski CJ, O’leary N, et al. Pain maps from facial pain patients indicate a broad pain geography [J]. J Dent Res, 1998, 77(6): 1465-1472.
[3]Chen H, Slade G, Lim PF, et al. Relationship between temporomandibular disorders, widespread palpation tenderness, and multiple pain conditions: a case-control study [J]. J Pain, 2012, 13(10): 1016-1027.
[4]Hu TT, Wang RR, Tang YY, et al. TLR4 deficiency abrogated widespread tactile allodynia, but not widespread thermal hyperalgesia and trigeminal neuropathic pain after partial infraorbital nerve transection [J]. Pain, 2018, 159(2): 273-283.
[5]Cohen SP, Vase L, Hooten WM. Chronic pain: an update on burden, best practices, and new advances [J]. The Lancet, 2021, 397(10289): 2082-2097.
[6]Ji RR, Nackley A, Huh Y, et al. Neuroinflammation and central sensitization in chronic and widespread pain [J]. Anesthesiology, 2018, 129(2): 343-366.
[7]Loeser JD, Melzack R. Pain: an overview [J]. The Lancet, 1999, 353(9164): 1607-1609.
[8]Gundersen V, Storm-mathisen J, Bergersen LH. Neuroglial transmission [J]. Physiol Rev, 2015, 95(3): 695-726.
[9]Donnelly CR, Andriessen AS, Chen G, et al. Central nervous system targets: glial cell mechanisms in chronic pain [J]. Neurotherapeutics, 2020, 17(3): 846-860.
[10]Zhang SH, Yu J, Lou GD, et al. Widespread pain sensitization after partial infraorbital nerve transection in MRL/MPJ mice [J]. Pain, 2016, 157(3): 740-749.
[11]John MT, Miglioretti DL, Leresche L, et al. Widespread pain as a risk factor for dysfunctional temporomandibular disorder pain [J]. Pain, 2003, 102(3): 257-263.
[12]Dominguez CA, Kouya PF, Wu WP, et al. Sex differences in the development of localized and spread mechanical hypersensitivity in rats after injury to the infraorbital or sciatic nerves to create a model for neuropathic pain [J]. Gender Medicine, 2009, 6: 225-234.
[13]Castro A, Li Y, Raver C, et al. Neuropathic pain after chronic nerve constriction may not correlate with chloride dysregulation in mouse trigeminal nucleus caudalis neurons [J]. Pain, 2017, 158(7): 1366-1372.
[14]Zhou YQ, Liu DQ, Chen SP, et al. Minocycline as a promising therapeutic strategy for chronic pain [J]. Pharmacol Res, 2018, 134: 305-310.
[15]Khurgel M, Koo AC, Ivy GO. Selective ablation of astrocytes by intracerebral injections of alpha-aminoadipate [J]. Glia, 1996, 16(4): 351-58.
[16]Vos BP, Strassman AM, Maciewicz RJ. Behavioral evidence of trigeminal neuropathic pain following chronic constriction injury to the rat's infraorbital nerve [J]. J Neurosci, 1994, 14(5 Pt 1): 2708-2723.
[17]Zhu A, Shen L, Xu L, et al. Wnt5a mediates chronic post-thoracotomy pain by regulating non-canonical pathways, nerve regeneration, and inflammation in rats [J]. Cell Signal, 2018, 44: 51-61.
[18]Yuan H, Duan L, Rao ZhR. The response of astrocytes in the caudal trigeminal nucleus of rats to pain stimuli and their relationship with neurons [J]. Acta Anatomicala Sinica, 2003,34 (6): 563-567. (in Chinese)
袁华, 段丽, 饶志仁.大鼠三叉神经尾侧亚核内星形胶质细胞对疼痛刺激的反应及与神经元的关系[J].解剖学报, 2003,34(6): 563-567.
[19]Fu KY, Light AR, Matsushima GK, et al. Microglial reactions after subcutaneous formalin injection into the rat hind paw [J]. Brain Res, 1999, 825(1-2): 59-67.
[20]Ji RR, Chamessian A, Zhang YQ. Pain regulation by non-neuronal cells and inflammation [J]. Science, 2016, 354(6312): 572-577.
[21]Ji RR, Xu ZZ, Gao YJ. Emerging targets in neuroinflammation-driven chronic pain [J]. Nat Rev Drug Discov, 2014, 13(7): 533-548.
[22]Ji RR, Donnelly CR, Nedergaard M. Astrocytes in chronic pain and itch [J]. Nat Rev Neurosci, 2019, 20(11): 667-685.
[23]Jiang BC, Cao DL, Zhang X, et al. CXCL13 drives spinal astrocyte activation and neuropathic pain via CXCR5 [J]. J Clin Invest, 2016, 126(2): 745-761.
[24]Mah W, Lee SM, Lee J, et al. A role for the purinergic receptor P2X(3) in astrocytes in the mechanism of craniofacial neuropathic pain [J]. Sci Rep, 2017, 7(1): 13627.
[25]Xie YF, Zhang S, Chiang CY, et al. Involvement of glia in central sensitization in trigeminal subnucleus caudalis (medullary dorsal horn) [J]. Brain Behav Immun, 2007, 21(5): 634-641.
|