[1]Langley PC. The prevalence, correlates and treatment of pain in the European Union [J]. Curr Med Res Opin, 2011,27(2):463-480.
[2]Wiech K, Tracey I. The influence of negative emotions on pain: behavioral effects and neural mechanisms [J]. Neuroimage, 2009,47(3):987-994.
[3]Strobel C, Hunt S, Sullivan R, et al. Emotional regulation of pain: the role of noradrenaline in the amygdala [J]. Sci China Life Sci, 2014,57(4):384-390.
[4]Kable JW, Murrin LC, Bylund DB. In vivo gene modification elucidates subtype-specific functions of alpha(2)-adrenergic receptors [J]. J Pharmacol Exp Ther, 2000, 293(1):1-7.
[5]Correa-Sales C, Rabin BC, Maze M. A hypnotic response to dexmedetomidine, an alpha 2 agonist, is mediated in the locus coeruleus in rats [J]. Anesthesiology, 1992, 76(6):948-952.
[6]Carollo DS, Nossaman BD, Ramadhyani U. Dexmedetomidine: a review of clinical applications [J]. Curr Opin Anaesthesiol, 2008,21(4):457-461.
[7]Seki T. Understanding the real state of human adult hippocampal neurogenesis from studies of rodents and Non-human primates [J]. Front Neurosci, 2020, 14:839.
[8]Kuhn HG, Toda T, Gage FH. Adult hippocampal neurogenesis: a coming-of-Age story [J]. J Neurosci, 2018, 38(49):10401-10410.
[9]David DJ, Samuels BA, Rainer Q, et al. Neurogenesis-dependent and -independent effects of fluoxetine in an animal model of anxiety-depression [J]. Neuron, 2009, 62(4):479-493.
[10]Hill AS, Sahay A, Hen R. Increasing adult hippocampal neurogenesis is sufficient to reduce anxiety and depression-like behaviors [J]. Neuropsychopharmacology, 2015, 40(10):2368-2378.
[11]Martinowich K, Manji H, Lu B. New insights into BDNF function in depression and anxiety [J]. Nat Neurosci, 2007, 10(9):1089-1093.
[12]Numakawa T, Odaka H, Adachi N. Actions of brain-derived neurotrophin factor in the neurogenesis and neuronal function, and its involvement in the pathophysiology of brain diseases [J]. Int J Mol Sci, 2018, 19(11):3650.
[13]Guma M, Wang Y, Viollet B, et al. AMPK activation by A-769662 controlsIL-6 expression in inflammatory arthritis [J]. PLoS One, 2015,10(10):e0140452.
[14]Chaplan SR, Bach FW, Pogrel JW, et al. Quantitative assessment of tactile allodynia in the rat paw [J]. J Neurosci Methods, 1994, 53(1):55-63.
[15]Zhong XL, Cao W, Zhao H,et al. MicroRNA-32-5p knockout eliminates lipopolysaccharide-induced depressive-like behavior in mice through inhibition of astrocyte overactivity [J]. Brain Beha Immun, 2020, 84:10-22.
[16]Bushnell MC, Ceko M, Low LA. Cognitive and emotional control of pain and its disruption in chronic pain [J]. Nat Rev Neurosci, 2013, 14(7):502-511.
[17]Goyal M, Singh S, Sibinga FB, et al. Meditation programs for psychological stress and well-being: a systematic review and meta-analysis[J]. JAMA Intern Med, 2014, 174(3):357-368.
[18]Xiang X, Wang S, Shao FB, et al. Electroacupuncture stimulation alleviates CFA-induced inflammatory pain via suppressing P2X3 expression[J]. Int J Mol Sci, 2019, 20(13):3248.
[19]Parent AJ, Beaudet N, Beaudry H, et al. Increased anxiety-like behaviors in rats experiencing chronic inflammatory pain [J]. Behav Brain Res, 2012, 229(1):160-167.
[20]Dai RP, Li CQ, Zhang JW, et al. Biphasic activation of extracellular signal-regulated kinase in anterior cingulate cortex distinctly regulates the development of pain-related anxiety and mechanical hypersensitivity in rats after incision [J]. Anesthesiology, 2011, 115(3):604-613.
[21]Duric V, McCarson KE. Neurokinin-1 (NK-1) receptor and brain-derived neurotrophic factor (BDNF) gene expression is differentially modulated in the rat spinal dorsal horn and hippocampus during inflammatory pain [J]. Mol Pain, 2007, 3:32.
[22]Hirono M, Nagao S, Obata K. Developmental α2-adrenergic regulation of noradrenergic synaptic facilitation at cerebellar GABAergic synapses[J]. Neuroscience, 2014, 256:242-251.
[23]Inoue T, Ninuma S, Hayashi M, et al. Effects of long-term exercise and low-level inhibition of GABAergic synapses on motor control and the expression of BDNF in the motor related cortex[J]. Neurol Res, 2018, 40(1):18-25.
[24]Mutso AA, Radzicki D, Baliki MN, et al. Abnormalities in hippocampal functioning with persistent pain[J]. J Neurosci, 2012, 32(17):5747-5756.
[25]Du J, Gray NA, Falke C, et al. Structurally dissimilar antimanic agents modulate synaptic plasticity by regulating AMPA glutamate receptor subunit GluR1 synaptic expression[J]. Ann N Y Acad Sci, 2003, 1003:378-380.
[26]Zhu G, Li J, He L, et al. MPTP-induced changes in hippocampal synaptic plasticity and memory are prevented by memantine through the BDNF-TrkB pathway[J]. Br J Pharmacol, 2015,172(9):2354-2368.
[27]Cameron HA, Glover LR. Adult neurogenesis: beyond learning and memory[J]. Annu Rev Psychol, 2015, 66:53-81.
[28]Somelar K, Jürgenson M, Jaako M, et al. Development of depression-like behavior and altered hippocampal neurogenesis in a mouse model of chronic neuropathic pain[J]. Brain Res, 2021, 1758:147329.
[29]Jiang N, Wang H, Li C, et al. The antidepressant-like effects of the water extract of Panax ginseng and Polygala tenuifolia are mediated via the BDNF-TrkB signaling pathway and neurogenesis in the hippocampus[J]. J Ethnopharmacol, 2021, 267: 113625.
|