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Granulocyte-Colony Stimulating Factor Alters the Pharmacodynamic Properties of Cocaine in Female Mice.粒细胞集落刺激因子改变了雌性小鼠体内可卡因的药效学特性。
ACS Chem Neurosci. 2019 Oct 16;10(10):4213-4220. doi: 10.1021/acschemneuro.9b00309. Epub 2019 Sep 11.
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Nucleic Acids Res. 2019 Jul 2;47(W1):W191-W198. doi: 10.1093/nar/gkz369.
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Proteomes. 2019 Apr 2;7(2):12. doi: 10.3390/proteomes7020012.
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The PRIDE database and related tools and resources in 2019: improving support for quantification data.PRIDE 数据库及相关工具和资源在 2019 年的进展:提高定量数据支持。
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Granulocyte-Colony-Stimulating Factor Alters the Proteomic Landscape of the Ventral Tegmental Area.粒细胞集落刺激因子改变腹侧被盖区的蛋白质组格局。
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Neuroimmune mechanisms of psychostimulant and opioid use disorders.精神兴奋剂和阿片类物质使用障碍的神经免疫机制
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10
Granulocyte Colony Stimulating Factor Enhances Reward Learning through Potentiation of Mesolimbic Dopamine System Function.粒细胞集落刺激因子通过增强中脑边缘多巴胺系统功能增强奖励学习。
J Neurosci. 2018 Oct 10;38(41):8845-8859. doi: 10.1523/JNEUROSCI.1116-18.2018. Epub 2018 Aug 27.

粒细胞集落刺激因子减少可卡因觅药行为并下调前额皮质中谷氨酸能突触蛋白。

Granulocyte-Colony Stimulating Factor Reduces Cocaine-Seeking and Downregulates Glutamatergic Synaptic Proteins in Medial Prefrontal Cortex.

机构信息

Department of Psychiatry, Icahn School of Medicine at Mount Sinai, New York, New York 10029.

Friedman Brain Institute, Icahn School of Medicine at Mount Sinai, New York, New York 10029.

出版信息

J Neurosci. 2021 Feb 17;41(7):1553-1565. doi: 10.1523/JNEUROSCI.1452-20.2020. Epub 2020 Dec 23.

DOI:10.1523/JNEUROSCI.1452-20.2020
PMID:33361463
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7896012/
Abstract

Psychostimulant use disorder is a major public health issue, and despite the scope of the problem there are currently no Food and Drug Administration (FDA)-approved treatments. There would be tremendous utility in development of a treatment that could help patients both achieve and maintain abstinence. Previous work from our group has identified granulocyte-colony stimulating factor (G-CSF) as a neuroactive cytokine that alters behavioral response to cocaine, increases synaptic dopamine release, and enhances cognitive flexibility. Here, we investigate the role of G-CSF in affecting extinction and reinstatement of cocaine-seeking and perform detailed characterization of its proteomic effects in multiple limbic substructures. Male Sprague Dawley rats were injected with PBS or G-CSF during (1) extinction or (2) abstinence from cocaine self-administration, and drug seeking behavior was measured. Quantitative assessment of changes in the proteomic landscape in the nucleus accumbens (NAc) and medial prefrontal cortex (mPFC) were performed via data-independent acquisition (DIA) mass spectrometry analysis. Administration of G-CSF during extinction accelerated the rate of extinction, and administration during abstinence attenuated cue-induced cocaine-seeking. Analysis of global protein expression demonstrated that G-CSF regulated proteins primarily in mPFC that are critical to glutamate signaling and synapse maintenance. Taken together, these findings support G-CSF as a viable translational research target with the potential to reduce drug craving or seeking behaviors. Importantly, recombinant G-CSF exists as an FDA-approved medication which may facilitate rapid clinical translation. Additionally, using cutting-edge multiregion discovery proteomics analyses, these studies identify a novel mechanism underlying G-CSF effects on behavioral plasticity. Pharmacological treatments for psychostimulant use disorder are desperately needed, especially given the disease's chronic, relapsing nature. However, there are currently no Food and Drug Administration (FDA)-approved pharmacotherapies. Emerging evidence suggests that targeting the immune system may be a viable translational research strategy; preclinical studies have found that the neuroactive cytokine granulocyte-colony stimulating factor (G-CSF) alters cocaine reward and reinforcement and can enhance cognitive flexibility. Given this basis of evidence we studied the effects of G-CSF treatment on extinction and reinstatement of cocaine seeking. We find that administration of G-CSF accelerates extinction and reduces cue-induced drug seeking after cocaine self-administration. In addition, G-CSF leads to downregulation of synaptic glutamatergic proteins in medial prefrontal cortex (mPFC), suggesting that G-CSF influences drug seeking via glutamatergic mechanisms.

摘要

精神兴奋剂使用障碍是一个主要的公共卫生问题,尽管问题的范围很大,但目前没有食品和药物管理局 (FDA) 批准的治疗方法。如果有一种治疗方法能够帮助患者戒除毒瘾并保持戒除状态,那将具有巨大的实用价值。我们小组的先前工作已经确定粒细胞集落刺激因子 (G-CSF) 是一种神经活性细胞因子,它可以改变对可卡因的行为反应,增加突触多巴胺释放,并增强认知灵活性。在这里,我们研究了 G-CSF 在影响可卡因寻求的消退和复燃中的作用,并对其在多个边缘亚结构中的蛋白质组学效应进行了详细表征。雄性 Sprague Dawley 大鼠在 (1) 消退或 (2) 可卡因自我给药期间接受 PBS 或 G-CSF 注射,并测量药物寻求行为。通过数据独立采集 (DIA) 质谱分析对伏隔核 (NAc) 和内侧前额叶皮层 (mPFC) 中蛋白质组景观的变化进行定量评估。结果表明,G-CSF 在消退期间的给药加速了消退的速度,而在禁欲期间的给药减弱了线索诱导的可卡因寻求。全局蛋白质表达分析表明,G-CSF 主要调节 mPFC 中的蛋白质,这些蛋白质对谷氨酸信号和突触维持至关重要。总之,这些发现支持 G-CSF 作为一种可行的转化研究靶点,具有减少药物渴望或寻求行为的潜力。重要的是,重组 G-CSF 作为一种已获得 FDA 批准的药物存在,这可能有助于快速进行临床转化。此外,使用前沿的多区域发现蛋白质组学分析,这些研究确定了 G-CSF 对行为可塑性影响的新机制。精神兴奋剂使用障碍的药物治疗非常需要,特别是考虑到这种疾病的慢性、复发性性质。然而,目前没有获得食品和药物管理局 (FDA) 批准的药物治疗方法。新出现的证据表明,靶向免疫系统可能是一种可行的转化研究策略;临床前研究发现,神经活性细胞因子粒细胞集落刺激因子 (G-CSF) 改变可卡因的奖励和强化作用,并能增强认知灵活性。基于这一证据基础,我们研究了 G-CSF 治疗对可卡因寻求的消退和复燃的影响。我们发现,G-CSF 的给药加速了可卡因自我给药后的消退,并减少了线索诱导的药物寻求。此外,G-CSF 导致内侧前额叶皮层 (mPFC) 中突触谷氨酸蛋白的下调,这表明 G-CSF 通过谷氨酸能机制影响药物寻求。