物质使用障碍受试者海马细胞外基质异常。

Jake Valeri, Charlotte Stiplosek, Sinead M O'Donovan, David Sinclair, Kathleen Grant, Ratna Bollavarapu, Donna M Platt, Craig A Stockmeier, Barbara Gisabella, Harry Pantazopoulos
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引用次数: 0

摘要

情境触发因素是导致物质使用障碍(SUD)复发的重要因素。新出现的证据表明,细胞外基质(ECM)分子作为奖赏记忆的介质发挥着关键作用。硫酸软骨素蛋白多糖(CSPG)是ECM分子的一个子集,在抑制性神经元周围形成神经周网(PNN)。PNN限制突触连接并帮助维持突触。啮齿动物模型表明,PNN的调节可能会增强SUD的上下文奖励记忆。然而,缺乏关于SUD患者海马中PNN的信息,以及与严重抑郁障碍(MDD)的共病如何影响PNN。我们使用了患有或不患有慢性酒精的人类和非人类灵长类动物队列的死后海马组织来检验SUD受试者PNN增加的假设。我们使用组织化学标记和定量显微镜检查PNN,并使用qRT-PCR检查ECM分子、突触标记和相关标记的基因表达。我们发现SUD中PNNs和CSPG标记的神经胶质细胞密度增加,与ECM蛋白酶基质金属蛋白酶9(MMP9)的mRNA表达减少和兴奋性突触标记物囊泡相关膜蛋白2(VAMP2)的表达增加相一致。在长期自我饮酒的猴子中也观察到PNN的类似增加。患有MDD的受试者表现出与SUD相反的变化,患有SUD和合并症MDD的受测者在任何检查的结果测量中变化最小。我们的研究结果表明,PNN在SUD中增加,可能有助于稳定上下文奖励记忆,正如临床前研究所表明的那样。我们的研究结果还指出了CSPG在SUD神经胶质细胞中表达的先前未被怀疑的作用。SUD中海马PNN增加的证据表明,靶向PNN以削弱上下文奖励记忆是SUD的一种很有前途的治疗方法,但与MDD的共病是一个重要的考虑因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Extracellular Matrix Abnormalities in the Hippocampus of Subjects with Substance Use Disorder.

Contextual triggers are significant factors contributing to relapse in substance use disorders (SUD). Emerging evidence points to a critical role of extracellular matrix (ECM) molecules as mediators of reward memories. Chondroitin sulfate proteoglycans (CSPGs) are a subset of ECM molecules that form perineuronal nets (PNN) around inhibitory neurons. PNNs restrict synaptic connections and help maintain synapses. Rodent models suggest that modulation of PNNs may strengthen contextual reward memories in SUD. However, there is currently a lack of information regarding PNNs in the hippocampus of people with SUD as well as how comorbidity with major depressive disorder (MDD) may affect PNNs. We used postmortem hippocampal tissues from cohorts of human and nonhuman primates with or without chronic alcohol use to test the hypothesis that PNNs are increased in subjects with SUD. We used histochemical labeling and quantitative microscopy to examine PNNs, and qRT-PCR to examine gene expression for ECM molecules, synaptic markers and related markers. We identified increased densities of PNNs and CSPG-labeled glial cells in SUD, coinciding with decreased expression of the ECM protease matrix metalloproteinase 9 (Mmp9), and increased expression for the excitatory synaptic marker vesicle associated membrane protein 2 (Vamp2). Similar increases in PNNs were observed in monkeys with chronic alcohol self-administration. Subjects with MDD displayed changes opposite to SUD, and subjects with SUD and comorbid MDD had minimal changes in any of the outcome measures examined. Our findings demonstrate that PNNs are increased in SUD, possibly contributing to stabilizing contextual reward memories as suggested by preclinical studies. Our results also point to a previously unsuspected role for CSPG expression in glial cells in SUD. Evidence for increased hippocampal PNNs in SUD suggests that targeting PNNs to weaken contextual reward memories is a promising therapeutic approach for SUD, however comorbidity with MDD is a significant consideration.

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