Cerebral iron deficiency may induce depression through downregulation of the hippocampal glucocorticoid-glucocorticoid receptor signaling pathway

内分泌学 糖皮质激素受体 海马结构 内科学 糖皮质激素 医学 下调和上调 神经科学 萧条(经济学) 信号转导 心理学 化学 生物 细胞生物学 基因 宏观经济学 经济 生物化学
作者
Hong Zhang,He Lian,Songfei Li,Manhuayun Zhai,Siman Ma,Jin Ge,Minyan Li,Fan Zhou,Hua Tian,Tuohutanguli Nuerkaman,Qiruo Sun,Yu Zhang,Jincai Hou,Guoxiang Sun,Shiliang Yin
出处
期刊:Journal of Affective Disorders [Elsevier BV]
卷期号:332: 125-135 被引量:10
标识
DOI:10.1016/j.jad.2023.03.085
摘要

Iron is a trace essential element to sustain the normal neurological function of human. Many researches had reported the involvement of iron deficiency (ID) in neural development and cognitive functions. However, the role of ID in pathogenesis of depression and its underlying mechanism are still unclear.In this study, we first used chronic unpredicted mild stress (CUMS) and iron deprivation mouse models to clarify the pathogenesis role of cerebral ID in depression. Then the role of hippocampal glucocorticoid (GC)-glucocorticoid receptor (GR) pathway in cerebral ID induced depression were elucidated in iron deprivation mice and iron deficiency anemia patients.Our results revealed that both CUMS and iron deprivation could induce cerebral ID in mice, and combination of iron deprivation and CUMS could accelerate the onset and aggravate the symptoms of depression in mice. In hippocampus, ID led to neuronal injury and neurogenesis decrease, which might be related to downregulation of GC-GR signaling pathway caused GR dysfunction, thereby inhibiting the negative feedback regulation function of hippocampus on hypothalamic-pituitary-adrenal (HPA) axis. Moreover, the overactivity of HPA axis in iron deprivation mice and iron deficiency anemia patients also confirmed GR dysfunction.Iron deprivation led to food and water intake decrease of mice, which may affect the behavioral test. In addition, we mainly evaluated the role of hippocampal ID in depression, and the number of iron deficiency anemia patients was limited.Our results identified that cerebral iron homeostasis was a key factor for maintaining mental stability.
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