甲基苯丙胺滥用者的认知障碍和红细胞成分及血清IL-6、IL-18和l -色氨酸水平的变化

Nutthika Chaidee, Natcharee Kraiwattanapirom, Supitcha Pannengpetch, Chutikorn Nopparat, Piyarat Govitrapong, Vorasith Siripornpanich, Wilasinee Suwanjang, Sutisa Nudmamud-Thanoi, Banthit Chetsawang
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引用次数: 0

摘要

甲基苯丙胺(MA)服用者的认知功能缺陷更令人担忧。认知缺陷被怀疑是神经炎症引起的神经失调的结果。此外,通过促炎细胞因子激活色氨酸代谢途径中的关键酶会导致代谢物毒性,进一步产生认知障碍。然而,神经炎症和色氨酸代谢物在ma诱导的认知缺陷中所起作用的证据需要更多的结论性研究。目的:本回顾性研究旨在确定与健康对照(HC)参与者相比,MA滥用者的血液炎症标志物、色氨酸代谢物相关分子和认知功能。方法:采用Stroop、Go/No-Go、One Back Task (OBT)、Wisconsin Card Sorting Test-64 (WCST-64)进行认知功能评估。分析血液样本进行全血细胞计数(CBC)分析,血清炎症细胞因子白介素(IL)-6和IL-18以及色氨酸代谢物。结果:MA组在选择注意、抑制、工作记忆、认知灵活性、概念形成和加工速度方面的认知表现较HC组差。MA滥用者红细胞(RBC)成分减少,但白细胞(wbc)和白细胞介素6 (IL-6)诱导,这可能表明贫血(系统性慢性低级别)炎症。此外,在MA使用者中还观察到色氨酸代谢途径中前体l -色氨酸的消耗,这可能代表了色氨酸代谢产物的诱导。结论:这些发现强调血液生物标志物可能是预测神经炎症和异常色氨酸代谢物在ma诱导的认知障碍中的作用的替代标志物。
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Cognitive impairment and changes of red blood cell components and serum levels of IL-6, IL-18, and L-tryptophan in methamphetamine abusers.

The deficit in cognitive function is more concerning in methamphetamine (MA) users. The cognitive deficit was suspected to be the consequence of neuroinflammation-induced neurological dysregulation. In addition, activating the key enzyme in the tryptophan metabolic pathway by pro-inflammatory cytokines results in metabolite toxicity, further generating cognitive impairments. However, the evidence for the role of neuroinflammation and tryptophan metabolites involved in MA-induced cognitive deficit needs more conclusive study.

Objectives: This retrospective study aimed to determine blood-inflammatory markers, tryptophan metabolite-related molecules, and cognitive function in MA abusers compared to healthy control (HC) participants.

Methods: The cognitive functions were evaluated using Stroop, Go/No-Go, One Back Task (OBT), and Wisconsin Card Sorting Test-64 (WCST-64). Blood samples were analyzed for complete blood count (CBC) analysis, serum inflammatory cytokines interleukin (IL)-6 and IL-18 and tryptophan metabolites.

Results: MA group exhibited poor cognitive performance in selective attention, inhibition, working memory, cognitive flexibility, concept formation and processing speed compared to HC. Reduction in red blood cell (RBC) components but induction in white blood cells (WBCs) and IL-6 were observed in MA abusers, which might indicate anemia of (systemic chronic low-grade) inflammation. In addition, the depletion of precursor in the tryptophan metabolic pathway, L-tryptophan was also observed in MA users, which might represent induction in tryptophan metabolites.

Conclusion: These findings emphasize that blood biomarkers might be a surrogate marker to predict the role of neuroinflammation and abnormal tryptophan metabolite in MA-induced cognitive impairments.

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