[1] Battle DE. Diagnostic and statistical manual of mental disorders (DSM)[J]. Codas, 2013, 25(2): 191-192. [2] Stanaway JD, Afshin A, Gakidou E, et al. Global, regional, and national comparative risk assessment of 84 behavioural, environmental and occupational, and metabolic risks or clusters of risks for 195 countries and territories, 1990-2017: a systematic analysis for the Global Burden of Disease Study 2017[J]. Lancet, 2018, 392(10159): 1923-1994. [3] Jimenez JC, Su K, Goldberg AR, et al. Anxiety cells in a hippocampal-hypothalamic circuit.[J]. Neuron, 2018, 97(3): 670-683. [4] Liu WZ, Zhang WH, Zheng ZH, et al. Identification of a prefrontal cortex-to-amygdala pathway for chronic stress-induced anxiety[J]. Nat Commun, 2020, 11(1): 2221-2236. [5] Lowery-Gionta EG, Crowley NA, Bukalo O, et al. Chronic stress dysregulates amygdalar output to the prefrontal cortex[J]. Neuropharmacology, 2018, 139: 68-75. [6] 吕 航, 朱传安, 邱文慧, 等. 抑制NOX2引起的氧化应激可以减轻CUMS诱发的焦虑样行为及其机制研究: 第二届全国焦虑症中西医结合论坛、中国中西医结合学会精神疾病专业委员会第18次全国年会暨第三届京津冀中西医结合精神病学年会, 中国北京, 2019[C]. [7] Lv H, Zhu C, Wu R, et al. Chronic mild stress induced anxiety-like behaviors can be attenuated by inhibition of NOX2-derived oxidative stress[J]. J Psychiatr Res, 2019, 114: 55-66. [8] Sun X, Zhang T, Zhao Y, et al. Panaxynol attenuates CUMS-induced anxiety and depressive-like behaviors via regulating neurotransmitters, synapses and the HPA axis in mice[J]. Food Funct, 2020, 11(2): 1235-1244. [9] Malyszczak K, Szechiński M. Comorbidity of different forms of anxiety disorders and depression[J]. Psychiatr Pol, 2004, 38(4): 603-609. [10] Wu X, Tang B, Liao X, et al. Suppressive effects of the supercritical-carbon dioxide fluid extract of Chrysanthemum indicum on chronic unpredictable mild stress-induced depressive-like behavior in mice[J]. Food Funct, 2019, 10(2): 1212-1224. [11] Yu H, Tang M, Zeng Z, et al. Suppressive effects of gelsemine on anxiety-like behaviors induced by chronic unpredictable mild stress in mice[J]. Brain Sci, 2022, 12(2): 191-206. [12] 韩 韵, 石瑞红, 王馨佳, 等. 慢性应激对不同性别小鼠空间认知能力的影响[J]. 中国应用生理学杂志, 2011, 27(3): 265-269. [13] 江 岩, 李 亚. 老年与青年小鼠慢性应激后抑郁样行为的观察[J]. 中国应用生理学杂志, 2017, 33(4): 313-315. [14] Mineur YS, Belzung C, Crusio WE. Effects of unpredictable chronic mild stress on anxiety and depression-like behavior in mice[J]. Behav Brain Res, 2006, 175(1): 43-50. [15] Jung Y, Hong S, Ma S, et al. Strain differences in the chronic mild stress animal model of depression and anxiety in mice.[J]. Biomol Ther, 2014, 22(5): 453-459. [16] Huang HJ, Chen XR, Han QQ, et al. The protective effects of Ghrelin/GHSR on hippocampal neurogenesis in CUMS mice[J]. Neuropharmacology, 2019, 155: 31-43. [17] Sun X, Zhang T, Zhao Y, et al. Panaxynol attenuates CUMS-induced anxiety and depressive-like behaviors via regulating neurotransmitters, synapses and the HPA axis in mice[J]. Food Funct, 2020, 11(2): 1235-1244. [18] Zhang J, Zhang J, Zhang Z, et al. Dopaminergic signaling in prefrontal cortex contributes to the antidepressant effect of electroacupuncture: An iTRAQ-based proteomics analysis in a rat model of CUMS[J]. Anatomical record, 2021, 304(11): 2454-2469. [19] Cenquizca LA, Swanson LW. Spatial organization of direct hippocampal field CA1 axonal projections to the rest of the cerebral cortex[J]. Brain Res Rev, 2007, 56(1): 1-26. [20] Ghosh I, Liu CS, Swardfager W, et al. The potential roles of excitatory-inhibitory imbalances and the repressor element-1 silencing transcription factor in aging and aging-associated diseases[J]. Mol Cell Neurosci, 2021, 117: 103683-103699. [21] Page CE, Coutellier L. Prefrontal excitatory/inhibitory balance in stress and emotional disorders: Evidence for over-inhibition[J]. Neurosci Biobehav Rev, 2019, 105: 39-51. [22] Chen Y, Zheng Y, Yan J, et al. Early life stress induces different behaviors in adolescence and adulthood may related with abnormal medial prefrontal cortex excitation/inhibition balance[J]. Front Neurosci, 2021, 15: 720286-720302. |