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Blockade of Indoleamine 2 3-dioxygenase 1 ameliorates hippocampal neurogenesis and BOLD-fMRI signals in chronic stress precipitated depression

机译:阻断吲哚胺23-二恶英酶1改善海马神经发生和慢性胁迫沉淀抑郁症的大胆信号

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摘要

Indoleamine 2, 3-dioxygenase 1 (IDO1) has been implicated in the pathogenesis of depression, though its molecular mechanism is still poorly understood. We investigated the molecular mechanism of IDO1 in depression by using the chronic unpredictable mild stress (CUMS) model in Ido1-/- mice and WT mice. The brain blood oxygen level dependent (BOLD) signals in mice were collected by functional magnetic resonance imaging (fMRI) technology. IDO1 inhibitor INCB024360 was intervened in dorsal raphe nucleus (DRN) through stereotactic injection. We found an elevation of serum IDO1 activity and decreased 5-HT in CUMS mice, and the serum IDO1 activity was negatively correlated with 5-HT level. Consistently, IDO1 was increased in hippocampus and DRN regions, accompanied by a reduction of hippocampal BDNF levels in mice with CUMS. Specifically, pharmacological inhibition of IDO1 activity in the DRN alleviated depressive-like behaviour with improving hippocampal BDNF expression and neurogenesis in CUMS mice. Furthermore, ablation of Ido1 exerted stress resistance and decreased the sensitivity of depression in CUMS mice with the stable BOLD signals, BDNF expression and neurogenesis in hippocampus. Thus, IDO1 hyperactivity played crucial roles in modulating 5-HT metabolism and BDNF function thereby impacting outcomes of hippocampal neurogenesis and BOLD signals in depressive disorder.
机译:吲哚胺2,3-二恶英酶1(IDO1)涉及抑郁症的发病机制,尽管其分子机制仍然明白。我们通过使用IDO1 - / - 小鼠和WT小鼠的慢性不可预测的温和胁迫(CUMS)模型研究了IDO1在抑郁症中的分子机制。通过功能磁共振成像(FMRI)技术收集小鼠中的大脑血氧依赖性(粗体)信号。 IDO1抑制剂Incb024360通过立体定向注射介入背甲核(DRN)。我们发现血清IDO1活性的升高,并在CUMS小鼠中减少了5-HT,血清IDO1活性与5-HT水平负相关。始终如一地,IDO1在海马和DRN地区增加,伴随着用CUMS的小鼠的海马BDNF水平降低。具体而言,DRN中IDO1活性的药理抑制缓解抑郁症状的行为,并在CUMS小鼠中改善海马BDNF表达和神经发生。此外,通过稳定的大胆信号,海马BDNF表达和神经发生,消除IDO1施加应力抗性并降低抑郁症的抑郁症。因此,IDO1多动在调节5-HT代谢和BDNF功能中起关键作用,从而影响海马神经发生的结果和抑郁症中的大胆信号。

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