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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Harnessing pain heterogeneity and RNA transcriptome to identify blood-based pain biomarkers: A novel correlational study design and bioinformatics approach in a graded chronic constriction injury model
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Harnessing pain heterogeneity and RNA transcriptome to identify blood-based pain biomarkers: A novel correlational study design and bioinformatics approach in a graded chronic constriction injury model

机译:利用疼痛异质性和RNA转录组来鉴定基于血液的疼痛生物标志物:分级慢性收缩损伤模型中的新型相关研究设计和生物信息学方法

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摘要

A quantitative, peripherally accessible biomarker for neuropathic pain has great potential to improve clinical outcomes. Based on the premise that peripheral and central immunity contribute to neuropathic pain mechanisms, we hypothesized that biomarkers could be identified from the whole blood of adult male rats, by integrating graded chronic constriction injury (CCI), ipsilateral lumbar dorsal quadrant (iLDQ) and whole blood transcriptomes, and pathway analysis with pain behavior. Correlational bioinformatics identified a range of putative biomarker genes for allodynia intensity, many encoding for proteins with a recognized role in immuneociceptive mechanisms. A selection of these genes was validated in a separate replication study. Pathway analysis of the iLDQ transcriptome identified Fcγ and Fcεμ signaling pathways, among others. This study is the first to employ the whole blood transcriptome to identify pain biomarker panels. The novel correlational bioinformatics, developed here, selected such putative biomarkers based on a correlation with pain behavior and formation of signaling pathways with iLDQ genes. Future studies may demonstrate the predictive ability of these biomarker genes across other models and additional variables.
机译:用于神经性疼痛的定量的,可从外周获取的生物标记物具有改善临床结果的巨大潜力。基于外围和中枢免疫促进神经性疼痛机制的前提,我们假设可以通过整合分级慢性收缩损伤(CCI),同侧腰背象限(iLDQ)和全脂蛋白从成年雄性大鼠全血中识别出生物标志物。血液转录组,以及具有疼痛行为的途径分析。相关的生物信息学确定了异常性疼痛强度的一系列假定的生物标记基因,其中许多编码的蛋白质在免疫/伤害感受机制中具有公认的作用。在单独的复制研究中验证了这些基因的选择。 iLDQ转录组的通路分析确定了Fcγ和Fcεμ信号通路等。这项研究是第一个采用全血转录组鉴定疼痛生物标志物组的研究。在此开发的新型相关生物信息学,是基于与疼痛行为的相关性以及与iLDQ基因形成的信号通路的关系,选择了此类推定的生物标志物。未来的研究可能会证明这些生物标记基因在其他模型和其他变量中的预测能力。

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