[1] Kim S, Hwang Y, Webster MJ, et al. Differential activation of immune/inflammatory response-related co-expression modules in the hippocampus across the major psychiatric disorders[J]. Mol Psychiatry, 2016, 21(3): 376-385.
[2] Yirmiya R, Rimmerman N, Reshef R. Depression as a microglial disease[J]. Trends Neurosci, 2015, 38(10): 637-658.
[3] Murray CJ, Vos T, Lozano R, et al. Disability-adjusted life years (DALYs) for 291 diseases and injuries in 21 regions, 1990-2010: a systematic analysis for the Global Burden of Disease Study 2010[J]. Lancet, 2012, 380(9859): 2197-2223.
[4] Wang HT, Liu H, Xu AJ, et al. Expression of microtubule-associated protein and apoptosisin amygdala of depressional rats[J].Acta Anatomica Sinica, 2013,44(1):30-33.(in Chinese)
王海涛,刘昊,徐爱军,等. 抑郁症大鼠杏仁核微管相关蛋白表达及神经元凋亡[J]. 解剖学报, 2013,44(1): 30-33.
[5] Raison CL, Rutherford RE, Woolwine BJ, et al. A randomized controlled trial of the tumor necrosis factor antagonist infliximab for treatment-resistant depression: the role of baseline inflammatory biomarkers[J]. JAMA Psychiatry, 2013, 70(1): 31-41.
[6] Miller AH, Raison CL. The role of inflammation in depression: from evolutionary imperative to modern treatment target[J]. Nat Rev Immunol, 2016, 16(1): 22-34.
[7] Slavich GM, Irwin MR. From stress to inflammation and major depressive disorder: a social signal transduction theory of depression[J]. Psychol Bull, 2014, 140(3): 774-815.
[8] Hendriksen E, van Bergeijk D, Oosting RS, et al. Mast cells in neuroinflammation and brain disorders[J]. Neurosci Biobehav Rev, 2017, 79: 119-133.
[9] Setiawan E, Wilson AA, Mizrahi R, et al. Role of translocator protein density, a marker of neuroinflammation, in the brain during major depressive episodes[J]. JAMA Psychiatry,2015, 72(3): 268-275.
[10] Hu X, Dong Y, Jin X, et al. The novel and potent anti-depressive action of triptolide and its influences on hippocampal neuroinflammation in a rat model of depression comorbidity of chronic pain[J]. Brain Behav Immun, 2017, 64: 180-194.
[11] Kalkman HO, Feuerbach D. Antidepressant therapies inhibit inflammation and microglial M1-polarization[J]. Pharmacol Ther, 2016, 163: 82-93.
[12] Wang T, Guo R, Zhou G, et al. Traditional uses, botany, phytochemistry, pharmacology and toxicology of Panax notoginseng (Burk.) F.H. Chen: A review[J]. J Ethnopharmacol, 2016, 188: 234-258.
[13] Xiang H, Liu Y, Zhang B, et al. The antidepressant effects and mechanism of action of total saponins from the caudexes and leaves of Panax notoginseng in animal models of depression[J]. Phytomedicine,2011, 18(8-9): 731-738.
[14] Brooks AK, Janda TM, Lawson MA, et al. Desipramine decreases expression of human and murine indoleamine-2,3-dioxygenases[J]. Brain Behav Immun, 2017, 62: 219-229.
[15] Zhang JC, Wu J, Fujita Y, et al. Antidepressant effects of TrkB ligands on depression-like behavior and dendritic changes in mice after inflammation[J]. Int J Neuropsychopharmacol, 2014, 18(4).
[16] Ma M, Ren Q, Yang C, et al. Antidepressant effects of combination of brexpiprazole and fluoxetine on depression-like behavior and dendritic changes in mice after inflammation[J]. Psychopharmacology (Berl),2017, 234(4): 525-533.
[17] Jimenez-Sanchez L, Castane A, Perez-Caballero L, et al. Activation of AMPA receptors mediates the antidepressant action of deep brain stimulation of the infralimbic prefrontal cortex[J]. Cereb Cortex, 2016, 26(6): 2778-2789.
[18] Elsayed M, Banasr M, Duric V, et al. Antidepressant effects of fibroblast growth factor-2 in behavioral and cellular models of depression[J]. Biol Psychiatry, 2012, 72(4): 258-265.
[19] Zheng X, Ma S, Kang A, et al. Chemical dampening of Ly6C(hi) monocytes in the periphery produces anti-depressant effects in mice[J]. Sci Rep, 2016, 6: 19406.
[20] Carlson D, David LK, Gallagher NM, et al. Dynamically timed stimulation of corticolimbic circuitry activates a stress-compensatory pathway[J]. Biol Psychiatry, 2017,82(12):904-913.
[21] Slattery DA, Cryan JF. Using the rat forced swim test to assess antidepressant-like activity in rodents[J]. Nat Protoc,2012, 7(6): 1009-1014.
[22] Cao WY, Xu Y, Luo YW, et al. Activation of ERK1/2 is required for normal response of isosexual social interactions in male rats[J]. Brain Res,2013, 1538: 51-60.
[23] Zhang RL, Wan W, Liu H, et al. Panax notoginseng saponins pretreatment affects the inflammatory visceral pain via upregulation of the glutamine synthetase in the rat spinal dorsal horn [J]. Acta Anatomica Sinica, 2015,46(1):20-24.(in Chinese)
张仁丽,万炜,刘红,等. 三七总皂苷预处理对炎性内脏痛大鼠脊髓背角谷氨酰胺合成酶表达的影响[J]. 解剖学报, 2015,46(1): 20-24.
[24] Liu CS, Adibfar A, Herrmann N, et al. Evidence for inflammation-associated depression[J]. Curr Top Behav Neurosci,2017, 31: 3-30.
[25] Raison CL, Capuron L, Miller AH. Cytokines sing the blues: inflammation and the pathogenesis of depression[J]. Trends Immunol,2006, 27(1): 24-31.
[26] Dunjic-Kostic B, Ivkovic M, Radonjic NV, et al. Melancholic and atypical major depression-connection between cytokines, psychopathology and treatment[J]. Prog Neuropsychopharmacol Biol Psychiatry, 2013, 43: 1-6.
[27] Custodio CS, Mello BS, Cordeiro RC, et al. Time course of the effects of lipopolysaccharide on prepulse inhibition and brain nitrite content in mice[J]. Eur J Pharmacol,2013, 713(1-3): 31-38.
[28] Ruhe HG, Mason NS, Schene AH. Mood is indirectly related to serotonin, norepinephrine and dopamine levels in humans: a meta-analysis of monoamine depletion studies[J]. Mol Psychiatry, 2007, 12(4): 331-359.
[29] Zhan Y, Paolicelli RC, Sforazzini F, et al. Deficient neuron-microglia signaling results in impaired functional brain connectivity and social behavior[J]. Nat Neurosci,2014, 17(3): 400-406.
[30] Yao YY, Ai QL, Chen YL, et al. Effect of ginsenoside Rg1 on proliferation induced by lipopolysaccharide in BV-2 cells [J]. Acta Anatomica Sinica, 2016, 47(5):614-619.(in Chinese)
姚玥伊,艾青龙,陈媛丽,等. 人参皂苷Rg1抑制脂多糖诱导BV-2小胶质细胞增殖[J]. 解剖学报, 2016,47(5): 614-619.
[31] Steiner J, Bielau H, Brisch R, et al. Immunological aspects in the neurobiology of suicide: elevated microglial density in schizophrenia and depression is associated with suicide[J]. J Psychiatr Res, 2008, 42(2): 151-157.
[32] Nair A, Bonneau RH. Stress-induced elevation of glucocorticoids increases microglia proliferation through NMDA receptor activation[J]. J Neuroimmunol,2006, 171(1-2): 72-85.
[33] Huang J, Wu D, Wang J, et al. Effects of panax notoginseng saponin on alpha, beta, and gamma secretase involved in abeta deposition in SAMP8 mice[J]. Neuroreport,2014, 25(2): 89-93.
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