[1] Orr PM, Shank BC, Black AC. The role of pain classification systems in pain management [J]. Crit Care Nurs Clin North Am, 2017, 29(4): 407-418.
[2] Julius D, Basbaum AI. Molecular mechanisms of nociception [J]. Nature, 2001, 413(6852): 203-210.
[3] Ronchetti S, Migliorati G, Delfino DV. Association of inflammatory mediators with pain perception [J]. Biomed Pharmacother, 2017, 96: 1445-1452.
[4] Zhang B, He XL, Ding Y, et al. Gaultherin, a natural salicylate derivative from Gaultheria yunnanensis: towards a better non-steroidal anti-inflammatory drug [J]. Eur J Pharmacol,2006, 530(1-2): 166-171.
[5] Lam KYC, Huang Y, Yao P, et al. Comparative study of different acorus species in potentiating neuronal differentiation in cultured PC12 cells [J]. Phytother Res, 2017, 31(11): 1757-1764.
[6] Li L, Sun HY, Liu W, et al. Silymarin protects against acrylamide-induced neurotoxicity via Nrf2 signalling in PC12 cells [J]. Food Chem Toxicol, 2017, 102: 93-101.
[7] Tian J, Tian Z, Qin SL, et al. Anxiolytic-like effects of alpha-asarone in a mouse model of chronic pain[J]. Metab Brain Dis, 2017, 32(6): 2119-2129.
[8] Gao YJ, Xu ZZ, Liu YC, et al. 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 condition [J]. Pain, 2010, 148(2): 309-319.
[9] Nasseri B, Zaringhalam J, Daniali S, et al. Thymulin treatment attenuates inflammatory pain by modulating spinal cellular and molecular signaling pathways [J]. Int Immunopharmacol, 2019, 70: 225-234.
[10] Wang XS, Guan SY, Liu A, et al. Anxiolytic effects of formononetin in an inflammatory pain mouse model [J]. Mol Brain, 2019, 12(1): 36.
[11] López-González MJ, Landry M, Favereaux A. MicroRNA and chronic pain: from mechanisms to therapeutic potential [J]. Pharmacol Ther, 2017, 180: 1-15.
[12] Navratilova E, Nation K, Remeniuk B, et al. Selective modulation of tonic aversive qualities of neuropathic pain by morphine in the central nucleus of the amygdala requires endogenous opioid signaling in the anterior cingulate cortex [J]. Pain, 2020, 161(3): 609-618.
[13] Fernando AB, Murray JE, Milton AL. The amygdala: securing pleasure and avoiding pain [J]. Front Behav Neurosci, 2013, 7: 190.
[14] McGaugh JL. Consolidating memories [J]. Annu Rev Psychol, 2015, 66(1): 1-24.
[15] Chen FL, Dong YL, Zhang ZJ, et al. Activation of astrocytes in the anterior cingulate cortex contributes to the affective component of pain in an inflammatory pain model [J]. Brain Res Bull, 2012, 87(1): 60-66.
[16] Liu J, Liu J, Liao HY, et al. Effects of resveratrol pretreatment on activation and inflammation of astrocytes after oxygen-glucose deprivation/reoxygenation injury in vitro [J]. Acta Anatomica Sinica, 2020, 51(3): 313-319. (in Chinese)
刘菁, 刘杰, 廖鸿雁, 等. 白藜芦醇预处理对星形胶质细胞氧糖剥夺/再复氧损伤后活化及炎症反应的影响 [J]. 解剖学报,2020, 51(3):313-319.
[17] Liu H, Li S, Yang C, et al. D-serine ameliorates motor and cognitive impairments in beta-amyloid 1-42 injected mice by inhibiting JNK signaling pathway [J]. J Chem Neuroanat, 2020, 109: 101852.
[18] Wang YT, Shan ShM, Liu XZh. The effect of autophagy on hyperalgesia and astrocytic activation in rats with inflammatory pain [J]. Chinese Journal of Integrated Traditional and Western Medicine in Intensive and Critical Care, 2017, 24(4): 364-368. (in Chinese)
王云涛, 单世民, 刘晓智. 自噬对炎性痛大鼠痛敏和星形胶质细胞活化的影响 [J]. 中国中西医结合急救杂志,2017, 24(4): 364-368.
[19] Zhang T, Zhao W, Zhang M, et al. Analgesic activities of the mixed opioid and NPFF receptors agonist DN-9 in a mouse model of formalin-induced orofacial inflammatory pain [J]. Peptides, 2018, 110: 30-39.
[20] Chen G, Li JJ, Song FX, et al. The role of KOR/ERK/c-Fos signaling pathway in Cokefentanyl-induced postoperative hyperalgesia inrats [J]. Chinese Journal of Pain Medicine, 2018, 24(12): 897-904. (in Chinese)
陈岗,李晶晶,宋凤香,等. ERK/c-Fos信号通路调控KOR在瑞芬太尼诱发痛觉过敏中的作用 [J].中国疼痛医学杂志,2018, 24(12):897-904.
[21] Yao YX, Zhang YF, Yang Y, et al. Spinal synaptic scaffolding protein Homer 1b/c regulates CREB phosphorylation and c-fos activation induced by inflammatory pain in rats [J]. Neurosci Lett, 2014, 559: 88-93.
[22] Qiu Q, Sun L, Wang X M, et al. Propofol produces preventive analgesia via GluN2B-containing NMDA receptor/ERK1/2 signaling pathway in a rat model of inflammatory pain [J]. Mol Pain, 2017, 13: 1744806917737462.
[23] Gao N, Liu H, Li S, et al. Volatile oil from acorus gramineus ameliorates the injury neurons in the hippocampus of amyloid beta 1-42 injected mice [J]. Anat Rec (Hoboken), 2019, 302(12): 2261-2270.
[24] Wang N, Wang H, Li L, et al. Beta-asarone inhibits amyloid-beta by promoting autophagy in a cell model of Alzheimer’s disease [J]. Front Pharmacol, 2019, 10: 1529.
[25] Kim KH, Moon E, Kim HK, et al. Phenolic constituents from the rhizomes of acorus gramineus and their biological evaluation on antitumor and anti-inflammatory activities [J]. Bioorg Med Chem Lett, 2012, 22(19): 6155-6159.
[26] Huang L, Deng M, He Y, et al. Beta-asarone and levodopa co-administration increase striatal dopamine level in 6-hydroxydopamine induced rats by modulating P-glycoprotein and tight junction proteins at the blood-brain barrier and promoting levodopa into the brain [J]. Clin Exp Pharmacol Physiol, 2016, 43(6): 634-643.
[27] Lim HW, Kumar H, Kim BW, et al. Beta-asarone (cis-2,4,5-trimethoxy-1-allyl phenyl), attenuates pro-inflammatory mediators by inhibiting NF-kappa B signaling and the JNK pathway in LPS activated BV-2 microglia cells [J]. Food Chem Toxicol, 2014, 72: 265-272.
[28] Saldanha AA, Vieira L, de Oliveira FM, et al. Anti-inflammatory and central and peripheral anti-nociceptive activities of alpha-asarone through the inhibition of TNF-alpha production, leukocyte recruitment and iNOS expression, and participation of the adenosinergic and opioidergic systems [J]. Inflammopharmacology, 2020, 28(4): 1039-1052.
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