[1]Wang QL, Pan JY, Liu YP, et al. Review and prospect of animal model of depression [J]. Guangdong Medical Journal, 2011, 32(7): 932-935. (in Chinese)
王雀良, 潘集阳, 刘亚平,等. 抑郁症动物模型的回顾与展望[J]. 广东医学, 2011, 32(7):932-935.
[2]Xu YJ, Sheng H, Ni X. Research progress on the pathogenesis of depression [J]. Acta Universitatis Medicinalis Anhui, 2012, 47(3): 323-326. (in Chinese)
徐永君, 盛慧, 倪鑫. 抑郁症发病机制研究进展[J]. 安徽医科大学学报, 2012, 47(3):323-326.
[3]Kendler KS, Karkowski LM, Prescott CA. The assessment of dependence in the study of stressful life events: validation using a twin design [J]. Psychol Med, 1999, 29(6): 1455-1460.
[4]Katz RJ, Sibel M. Animal model of depression: tests of three structurally and pharmacologically novel antidepressant compounds [J]. Pharmacol Biochem Behav, 1982, 16(6): 973-977.
[5]Willner P, Towell A, Sampson D, et al. Reduction of sucrose preference by chronic unpredictable mild stress, and its restoration by a tricyclic antidepressant [J]. Psychopharmacology, 1987, 93(3): 358-364.
[6]Dal-Zotto S, Marti O, Armario A. Influence of single or repeated experience of rats with forced swimming on behavioural and physiological responses to the stressor [J]. Behav Brain Res, 2000, 114(1-2): 175-181.
[7]Gourley SL, Wu FJ, Kiraly DD, et al. Regionally specific regulation of ERK MAP kinase in a model of antidepressant-sensitive chronic depression [J]. Biol Psychiatry, 2008, 63(4): 353-359.
[8]Sutcigil L, Oktenli C, Musabak U, et al. Pro-and anti-inflammatory cytokine balance in major depression: effect of sertraline therapy [J]. Clin Dev Immunol, 2008, 2007(1740-2522):110-113.
[9]Szymanska M, Budziszewska B, Jaworska-Feil L, et al. The effect of antidepressant drugs on the HPA axis activity, glucocorticoid receptor level and FKBP51 concentration in prenatally stressed rats [J]. Psychoneuroendocrinology, 2009, 34(6): 822-832.
[10]Macqueen GM, Campbell S, Mcewen BS, et al. Course of illness, hippocampal function, and hippocampal volume in major depression [J]. Proc Natl Acad Sci USA, 2003, 100(3): 1387-1392.
[11]Wang ZL, Jiang S, Jin CH, et al. Aged-related changes of brain derived neurotrophic factor and γ-aminobutyric acid expression in the visual cortex of rat [J]. Acta Anatomica Sinica, 2015, 46(2): 151-157. (in Chinese)
王紫露, 姜三, 金彩虹,等. 大鼠视皮层中脑源性神经营养因子及γ-氨基丁酸表达的年龄相关性变化[J]. 解剖学报, 2015, 46(2):151-157.
[12]Massa SM, Yang T, Xie Y, et al. Small molecule BDNF-mimetics activate TrkB signaling and prevent neuronal degeneration in rodents [J]. J Clin Invest, 2010, 120(5): 1774-1785.
[13]Song ShJ, Liu JL, Xu BX, et al. Effects of the vitamin D on the immune function of the immunosuppressant mice induced by glucocorticoid [J]. Chinese Journal of Clinicians(Electronic Edition), 2013, 7(23): 10802-10805. (in Chinese)
宋淑军, 刘俊丽, 徐冰心,等. 维生素D对糖皮质激素免疫抑制模型小鼠免疫功能的影响[J]. 中华临床医师杂志:电子版, 2013, 7(23) : 10802-10805.
[14]Zhang RSh, Li QF. The relationship of hypothalamic-pituitary-adrenal axis and diabetes [J]. Journal of International Pathology and Clinical Medicine 2005, 25(6): 550-552. (in Chinese)
章汝霜, 李启富. 下丘脑-垂体-肾上腺轴与糖尿病[J]. 临床与病理杂志, 2005, 25(6):550-552.
[15]Ray A. Glucocorticoids [J]. Science, 1995, 270(5239): 1103.
[16]Tang Q, Liu ZhX, Cui ShF, et al. Establishment and evaluation of rat depression model [J]. Labratory Animal Science, 2011, 28(1): 6-9. (in Chinese)
汤球, 刘志学, 崔淑芳,等. 大鼠抑郁症模型的建立与评价[J]. 实验动物科学, 2011, 28(1):6-9.
[17]Freitas AE, Egea J, Buendia I, et al. Agmatine, by improving neuroplasticity markers and inducing Nrf2, prevents corticosterone-induced depressive-like behavior in mice [J]. Mol Neurobiol, 2016, 53(5): 3030-3045.
[18]Liu ChL, Ruan KF, Gao JW, et al. Multiple mechanisms of depression [J]. Progress in Physiological Sciences, 2013, 44(4): 253-258. (in Chinese)
刘春林, 阮克锋, 高君伟,等. 抑郁症的多机制发病[J]. 生理科学进展, 2013, 44(4):253-258.
[19]Brummelte S, Gale LA. Chronic high corticosterone reduces neurogenesis in the dentate gyrus of adult male and female rats [J]. Neuroscience, 2010, 168(3): 680-690.
[20]Wang LX, Peng DH, Fang YR. Research progress of roles of CREB in pathogenesis and treatment of depression [J]. Journal of Shanghai Jiaotong University (Medical Science), 2010, 30(6): 647-650. (in Chinese)
王凌霄, 彭代辉, 方贻儒. CREB在抑郁症发病和治疗作用中的研究进展[J]. 上海交通大学学报(医学版), 2010, 30(6):647-650.
[21]Musazzi L, Mallei A, Tardito D, et al. Early-life stress and antidepressant treatment involve synaptic signaling and Erk kinases in a gene-environment model of depression[J]. J Psychiatr Res, 2010, 44(8):511-520.
[22]Qi X, Lin W, Li J, et al. Fluoxetine increases the activity of the ERK-CREB signal system and alleviates the depressive-like behavior in rats exposed to chronic forced swim stress.[J]. Neurobiol Dis, 2008, 31(2):278-285.
[23]Zhang X, Song Y, Bao T, et al. Antidepressant-like effects of acupuncture involved the ERK signaling pathway in rats[J]. BMC Complement Altern Med, 2016, 16(1):380.
[24]Ma XP, An ShCh. Involvenment of hippocampal glucocorticoids and BDNF- in depression induced by chronic unpredictable mild stress [J]. Journal of Shanxi Normal University (Natural Science Edition), 2013, 41(6): 56-62. (in Chinese)
马学萍, 安书成. 慢性应激性抑郁发生中海马糖皮质激素对BDNF-的影响[J]. 陕西师范大学学报(自科版), 2013, 41(6):56-62.
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