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Differentially expressed gene networks biomarkers long noncoding RNAs and shared responses with cocaine identified in the midbrains of human opioid abusers

机译:在人类阿片类药物滥用者的中脑中发现的差异表达的基因网络生物标记长非编码RNA以及与可卡因的共同应答

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摘要

Opioid abuse is now the most common cause of accidental death in the US. Although opioids and most other drugs of abuse acutely increase signaling mediated by midbrain dopamine (DA)-synthesizing neurons, little is known about long-lasting changes in DA cells that may contribute to continued opioid abuse, craving, and relapse. A better understanding of the molecular and cellular bases of opioid abuse could lead to advancements in therapeutics. This study comprises, to our knowledge, the first unbiased examination of genome-wide changes in midbrain gene expression associated with human opioid abuse. Our analyses identified differentially expressed genes and distinct gene networks associated with opioid abuse, specific genes with predictive capability for subject assignment to the opioid abuse cohort, and genes most similarly affected in chronic opioid and cocaine abusers. We also identified differentially expressed long noncoding RNAs capable of regulating known drug-responsive protein-coding genes. Opioid-regulated genes identified in this study warrant further investigation as potential biomarkers and/or therapeutic targets for human substance abuse.
机译:阿片类药物滥用现在是美国意外死亡的最常见原因。尽管阿片类药物和大多数其他滥用药物会急剧增加中脑多巴胺(DA)合成神经元介导的信号传导,但人们对DA细胞的长期变化知之甚少,这种变化可能会导致持续的阿片类药物滥用,渴望和复发。对阿片类药物滥用的分子和细胞基础的更好理解可能会导致治疗学的进步。就我们所知,这项研究包括对与人类阿片类药物滥用相关的中脑基因表达的全基因组变化的首次无偏检验。我们的分析确定了与阿片类药物滥用相关的差异表达基因和不同的基因网络,对阿片类药物滥用人群具有预测能力的特定基因以及在慢性阿片类药物和可卡因滥用者中受影响最相似的基因。我们还确定了差异表达的长非编码RNA,它们能够调节已知的药物反应性蛋白编码基因。在这项研究中确定的阿片样物质调节基因值得进一步研究,作为潜在的生物标志物和/或人类物质滥用的治疗靶标。

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