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In addition, when sex hormones are dysregulated, it significantly increases both the risk of developing depression and the likelihood of its worsening over time, and the disorder of cholesterol metabolism can lead to depression by disrupting the homeostasis of sex hormone microenvironment in the brain. Therefore, drugs can exert antidepressant effects by mediating cholesterol metabolism, regulating the levels of sex hormones and their receptors, and restoring the homeostasis of brain sex hormone microenvironment. This article aims to review the mechanism of the imbalance of brain sex hormone homeostasis caused by cholesterol mediated metabolic disorders of neurosteroid deficiency, hypothalamic-pituitary-adrenal axis hyperactivation, and inflammatory pathway activation. Furthermore, stable isotope tracing, metabolomics, biological network regulation and other technologies were applied to reveal the internal mechanism of “cholesterol metabolism sex hormone homeostasis depression”, as well as the regulatory effect of drug intervention on depression. It provides novel research strategies for revealing the mechanism of depression and drug intervention from the perspective of homeostatic regulation of sex hormone microenvironment., authors=XIE Jiamei, JIA Chongning, WANG Yujing, Li Kaiwen, ZHAO Yunhao, TIAN Junsheng, authorsList=XIE Jiamei, JIA Chongning, WANG Yujing, Li Kaiwen, ZHAO Yunhao, TIAN Junsheng, authorCompany=null, correspAuthors=null, authorNote=null, correspAuthorsNote=null, copyrightStatement=null, copyrightOwner=null, extLink=null, articleAbsUrl=null, sourceXml=null, magXml=null, pdfUrl=null, pdf=null, pdfFileSize=null, pdfExtLink=null, richHtmlUrl=null, mobilePdfUrl=null, reviewReport=null, pdfFirstPage=null, abstractGraph=null, abstractGraphContent=null, abstractVideo=null, citation=null, cebUrl=null, magXmlContent=null, mapNumber=null, fund=null), CN=ArticleExt(id=1304415572805046299, articleId=1304415572515639322, tenantId=1146029695717560320, journalId=1302319053441957962, language=CN, title=胆固醇代谢紊乱致脑内性激素稳态失衡与抑郁症及抗抑郁中药干预的研究策略, columnId=1304140194685415572, journalTitle=中草药, columnName=综述, runingTitle=null, highlight=null, articleAbstract=胆固醇作为性激素合成的前体,其代谢过程与抑郁症发生及抗抑郁药物干预密切相关。研究表明性激素稳态失衡与抑郁症易感性及进展高度相关,胆固醇代谢紊乱可通过破坏脑内性激素微环境稳态导致抑郁症发生。而药物可通过介导胆固醇代谢、调控性激素及其受体水平、恢复脑内性激素微环境稳态发挥抗抑郁作用。通过综述胆固醇介导神经甾体缺乏、下丘脑-垂体-肾上腺轴过度激活、炎症通路激活3个途径的代谢紊乱致脑内性激素稳态失衡的机制;并应用稳定同位素示踪、代谢组学、生物网络调控等技术揭示“胆固醇代谢-性激素稳态-抑郁症发生”的内在机制,及药物干预对抑郁症的调控效应。为从性激素微环境稳态调控角度揭示抑郁症发生及药物干预机制提供研究策略。, authors=谢佳美1, 贾崇宁1, 王育静1, 李凯文1, 赵云昊1, 田俊生1,2, authorsList=谢佳美, 贾崇宁, 王育静, 李凯文, 赵云昊, 田俊生, authorCompany=1 山西大学 中医药现代研究中心, 山西 太原 030006;
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张军霞,马娇娇,李艳杰,等.基于肠道菌群的中药治疗高脂血症作用机制研究进展[J].中草药, 2025,56(6):2171-2183.
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Sun S Q, Yang S, Mao Y J, et al. Reduced cholesterol is associated with the depressive-like behavior in rats through modulation of the brain 5-HT1A receptor[J].Lipds Health Dis, 2015, 14(1):22.
李媛媛. δ-GABAAR在青春期雌性小鼠抑郁行为中的作用机制研究[D].天津:天津医科大学, 2020.
Edinoff A N, Odisho A S, Lewis K, et al. Brexanolone, a GABAA modulator, in the treatment of postpartum depression in adults:A comprehensive review[J]. Front Psychiatry, 2021, 12:699740.
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胆固醇代谢紊乱致脑内性激素稳态失衡与抑郁症及抗抑郁中药干预的研究策略
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谢佳美, 贾崇宁, 王育静, 李凯文, 赵云昊, 田俊生
中草药 | 综述 2026,57(9): 3600-3608
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中草药 |综述 2026 , 57 (9) : 3600 -3608
胆固醇代谢紊乱致脑内性激素稳态失衡与抑郁症及抗抑郁中药干预的研究策略
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谢佳美, 贾崇宁, 王育静, 李凯文, 赵云昊, 田俊生
作者信息
通讯作者:
田俊生
作者简介:
谢佳美: 谢佳美,硕士研究生,研究方向为中药神经精神药理。E-mail:x15249164577@163.com
Research strategies on relationship between depression and sex hormone imbalance caused by cholesterol metabolism disorder and Chinese herbal medicine intervention
XIE Jiamei, JIA Chongning, WANG Yujing, Li Kaiwen, ZHAO Yunhao, TIAN Junsheng
Affiliations
doi: 10.7501/j.issn.0253-2670.2026.09.028
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胆固醇作为性激素合成的前体,其代谢过程与抑郁症发生及抗抑郁药物干预密切相关。研究表明性激素稳态失衡与抑郁症易感性及进展高度相关,胆固醇代谢紊乱可通过破坏脑内性激素微环境稳态导致抑郁症发生。而药物可通过介导胆固醇代谢、调控性激素及其受体水平、恢复脑内性激素微环境稳态发挥抗抑郁作用。通过综述胆固醇介导神经甾体缺乏、下丘脑-垂体-肾上腺轴过度激活、炎症通路激活3个途径的代谢紊乱致脑内性激素稳态失衡的机制;并应用稳定同位素示踪、代谢组学、生物网络调控等技术揭示“胆固醇代谢-性激素稳态-抑郁症发生”的内在机制,及药物干预对抑郁症的调控效应。为从性激素微环境稳态调控角度揭示抑郁症发生及药物干预机制提供研究策略。
胆固醇代谢紊乱  /  性激素稳态  /  抑郁症  /  抗抑郁药物  /  研究策略  /  菟丝子  /  柴归颗粒
As the precursor of sex hormone synthesis, depression is profoundly influenced by metabolic pathways, which also affect how patients respond to antidepressants. In addition, when sex hormones are dysregulated, it significantly increases both the risk of developing depression and the likelihood of its worsening over time, and the disorder of cholesterol metabolism can lead to depression by disrupting the homeostasis of sex hormone microenvironment in the brain. Therefore, drugs can exert antidepressant effects by mediating cholesterol metabolism, regulating the levels of sex hormones and their receptors, and restoring the homeostasis of brain sex hormone microenvironment. This article aims to review the mechanism of the imbalance of brain sex hormone homeostasis caused by cholesterol mediated metabolic disorders of neurosteroid deficiency, hypothalamic-pituitary-adrenal axis hyperactivation, and inflammatory pathway activation. Furthermore, stable isotope tracing, metabolomics, biological network regulation and other technologies were applied to reveal the internal mechanism of “cholesterol metabolism sex hormone homeostasis depression”, as well as the regulatory effect of drug intervention on depression. It provides novel research strategies for revealing the mechanism of depression and drug intervention from the perspective of homeostatic regulation of sex hormone microenvironment.
disruption of cholesterol metabolism  /  sex hormone homeostasis  /  depression  /  antidepressant drugs  /  research strategies  /  Cuscutae Semen  /  Chaigui Granules
谢佳美, 贾崇宁, 王育静, 李凯文, 赵云昊, 田俊生. 胆固醇代谢紊乱致脑内性激素稳态失衡与抑郁症及抗抑郁中药干预的研究策略. 中草药, 2026 , 57 (9) : 3600 -3608 . DOI: 10.7501/j.issn.0253-2670.2026.09.028
XIE Jiamei, JIA Chongning, WANG Yujing, Li Kaiwen, ZHAO Yunhao, TIAN Junsheng. Research strategies on relationship between depression and sex hormone imbalance caused by cholesterol metabolism disorder and Chinese herbal medicine intervention[J]. Chinese Traditional and Herbal Drugs, 2026 , 57 (9) : 3600 -3608 . DOI: 10.7501/j.issn.0253-2670.2026.09.028

    中国中医科学院科技创新工程项目(CI2024E003,CI2024C003YN);北京市自然科学基金资助项目(7254508);国家重点研发计划项目(2025YFC3509201);中央级公益性科研院所基本科研业务费专项资金(ZXKT22061,ZZ18-YQ-036,GL2025009,ZXKT25043)

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Steiner R D, Linck L M, Flavell D P, et al. Sterol balance in the Smith-Lemli-Opitz syndrome:Reduction in whole body cholesterol synthesis and normal bile acid production[J]. J Lipid Res, 2000, 41(9):1437-1447.
Yu C X, Jiang F J, Zhang M J, et al. HC diet inhibited testosterone synthesis by activating endoplasmic reticulum stress in testicular Leydig cells[J]. J Cell Mol Med, 2019,23(5):3140-3150.
Xu Y F, Hutchison S M, Hernández-Ledezma J J, et al.Increased 27-hydroxycholesterol production during luteolysis may mediate the progressive decline in progesterone secretion[J]. Mol Hum Reprod, 2018, 24(1):2-13.
钱宏梁,潘志强,李亚,等.不同中药药对调节氢化可的松药源性证候小鼠肾上腺皮质功能的研究[J].中草药, 2019, 50(10):2383-2389.
Koganti P P, Zhao A H, Kern M C, et al. STAR/STARD1:A mitochondrial intermembrane space cholesterol shuttle degraded through mitophagy[J]. Proc Natl Acad Sci USA,2025, 122(41):e2508809122.
Miller W L, Bose H S. Early steps in steroidogenesis:Intracellular cholesterol trafficking[J]. J Lipid Res, 2011,52(12):2111-2135.
Huang X D, Ma T Y, Chen X Y. Tributyltin inhibits development of pubertal Leydig cells in rats[J]. Reprod Toxicol, 2022, 111:49-58.
Pabisz P, Bazak J, Girotti A W, et al. Anti-steroidogenic effects of cholesterol hydroperoxide trafficking in MA-10Leydig cells:Role of mitochondrial lipid peroxidation and inhibition thereof by selenoperoxidase GPX4[J]. Biochem Biophys Res Commun, 2022, 591:82-87.
Houben T, Bitorina A V, Oligschlaeger Y, et al. Sexopposed inflammatory effects of 27-hydroxycholesterol are mediated via differences in estrogen signaling[J]. J Pathol, 2020, 251(4):429-439.
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2026年第57卷第9期
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doi: 10.7501/j.issn.0253-2670.2026.09.028
  • 接收时间:2025-12-15
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2种不同金属材料的力学参数

Family
属数
Number of
genus
种数
Number of
species
占总种数比例
Percentage of
total species (%)

Genus
种数
Number of
species
占总种数比例
Percentage of total
species (%)
鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78
小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39
多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39
红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87
小菇属 Mycena 11 5.26
光柄菇属 Pluteus 5 2.39
红菇属 Russula 17 8.13
栓菌属 Trametes 5 2.39
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