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首页> 外文期刊>Pharmacology, Biochemistry and Behavior >Expression profiling in neuropsychiatric disorders: Emphasis on glutamate receptors in bipolar disorder
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Expression profiling in neuropsychiatric disorders: Emphasis on glutamate receptors in bipolar disorder

机译:神经精神疾病中的表达分析:双相障碍中的谷氨酸受体强调

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Functional genomics and proteomics approaches are being employed to evaluate gene and encoded protein expression changes with the tacit goal to find novel targets for drug discovery. Genome-wide association studies (GWAS) have attempted to identify valid candidate genes through single nucleotide polymorphism (SNP) analysis. Furthermore, microarray analysis of gene expression in brain regions and discrete cell populations has enabled the simultaneous quantitative assessment of relevant genes. The ability to associate gene expression changes with neuropsychiatric disorders, including bipolar disorder (BP), and their response to therapeutic drugs provides a novel means for pharmacotherapeutic interventions. This review summarizes gene and pathway targets that have been identified in GWAS studies and expression profiling of human postmortem brain in BP, with an emphasis on glutamate receptors (GluRs). Although functional genomic assessment of BP is in its infancy, results to date point towards a dysregulation of GluRs that bear some similarity to schizophrenia (SZ), although the pattern is complex, and likely to be more complementary than overlapping. The importance of single population expression profiling of specific neurons and intrinsic circuits is emphasized, as this approach provides informative gene expression profile data that may be underappreciated in regional studies with admixed neuronal and non-neuronal cell types.
机译:使用功能基因组和蛋白质组学方法来评估基因和编码的蛋白质表达随着默契的目标来寻找药物发现的新靶点。基因组 - 范围协会研究(GWAs)试图通过单一核苷酸多态性(SNP)分析来鉴定有效的候选基因。此外,脑区和离散细胞群中基因表达的微阵列分析使得同时定量评估相关基因。将基因表达与神经精神疾病相关的能力,包括双极性障碍(BP),以及它们对治疗药物的反应为药物治疗干预提供了一种新颖的手段。本综述概述了在BP中的GWAS研究和人类后期脑的表达谱中鉴定的基因和途径靶标,重点是谷氨酸受体(Glower)。尽管BP的功能基因组评估是其初期的,但是迄今为止迄今为止与精神分裂症(SZ)具有一些相似性的令人讨厌的迄今为止,尽管该图案是复杂的,并且可能比重叠更互补。强调了特定神经元和内在电路的单一群体表达分析的重要性,因为这种方法提供了信息性的基因表达谱数据,该数据可能被纳入混合神经元和非神经元细胞类型的区域性研究。

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