Suppr超能文献

从单细胞和亚细胞区域制备互补DNA(cDNA)。

Preparation of cDNA from single cells and subcellular regions.

作者信息

Kacharmina J E, Crino P B, Eberwine J

机构信息

Department of Pharmacology, University of Pennsylvania Medical Center, Philadelphia 19104, USA.

出版信息

Methods Enzymol. 1999;303:3-18. doi: 10.1016/s0076-6879(99)03003-7.

Abstract

Phenotypic characterization of cells in conjunction with single-cell mRNA analysis, which yields information regarding expression of multiple genes in individual neurons, facilitates a detailed and comprehensive view of neuronal cell biology. More specifically, the aRNA amplification method has provided an approach to analyze mRNA levels in single cells that have been phenotypically characterized on the basis of electrophysiology, morphology, and/or protein expression. In this way, relative mRNA abundances can be directly assayed from a well-defined population of neurons. The concept of expression profiling led to the development of robotics methods for arraying thousands of cDNAs on microarrays. These cDNA arrays can be screened with labeled aRNA or cDNA to generate a molecular fingerprint of a specific cell type, disease state, or therapeutic efficacy. A broad view of how gene expression is altered in single neurons affected by a particular disease process may provide clues to pathogenetic disease mechanisms or avenues for therapeutic interventions. The use of mRNA profiles to produce diagnostics and therapeutics is called transcript-aided drug design (TADD). When coupled with single-cell resolution, TADD promises to be an important tool in diagnosis of disease states, as well as provide a blueprint on which to develop therapeutic strategies. For example, mRNA abundances in an individual diseased cell may increase, decrease, or remain constant, and thus it is possible that a pharmaceutical alone or in combination with other drugs may be specifically designed to restore mRNA abundances to a normal state. Alternatively, if functional protein levels parallel the mRNA level changes, then drugs targeting the function of the proteins translated from these altered mRNAs may prove to be therapeutic. One promise of such an approach is that information about mRNA abundances that are altered in a diseased cell may provide new therapeutic indications for existing drugs. For example, if the abundance of mRNA for the beta-adrenergic receptor is altered as shown by the microarrays for a particular disease, already available adrenergic receptor agonists or antagonists that had not previously been used in this particular disease paradigm may prove to be therapeutically efficacious. The expression profile of a given cell is a measure of the potential for protein expression. Proteins are generally the functional entities within cells and differences in protein function often result in disease. The ability to monitor the coordinate changes in gene expression, in single phenotypically identified cells, that correlate with disease will provide unique insight into the expressed genetic variability of cells and will likely furnish unforeseen insight into the underlying cellular mechanisms that produce disease etiology.

摘要

将细胞的表型特征与单细胞mRNA分析相结合,可获取有关单个神经元中多个基因表达的信息,有助于详细全面地了解神经元细胞生物学。更具体地说,aRNA扩增方法提供了一种分析单细胞中mRNA水平的途径,这些单细胞已基于电生理学、形态学和/或蛋白质表达进行了表型特征鉴定。通过这种方式,可以直接从明确界定的神经元群体中检测相对mRNA丰度。表达谱分析的概念促使了在微阵列上排列数千个cDNA的机器人技术的发展。这些cDNA阵列可以用标记的aRNA或cDNA进行筛选,以生成特定细胞类型、疾病状态或治疗效果的分子指纹。对受特定疾病过程影响的单个神经元中基因表达如何改变的广泛了解,可能为致病疾病机制或治疗干预途径提供线索。利用mRNA谱来开发诊断方法和治疗方法被称为转录辅助药物设计(TADD)。当与单细胞分辨率相结合时,TADD有望成为疾病状态诊断的重要工具,并为制定治疗策略提供蓝图。例如,单个患病细胞中的mRNA丰度可能增加、减少或保持不变,因此有可能专门设计一种药物单独使用或与其他药物联合使用,以使mRNA丰度恢复到正常状态。或者,如果功能性蛋白质水平与mRNA水平变化平行,那么针对从这些改变的mRNA翻译而来的蛋白质功能的药物可能被证明具有治疗作用。这种方法的一个前景是,关于患病细胞中改变的mRNA丰度的信息可能为现有药物提供新的治疗指征。例如,如果特定疾病的微阵列显示β-肾上腺素能受体的mRNA丰度发生改变,那么以前未用于这种特定疾病模式的现有肾上腺素能受体激动剂或拮抗剂可能被证明具有治疗效果。给定细胞的表达谱是蛋白质表达潜力的一种衡量。蛋白质通常是细胞内的功能实体,蛋白质功能的差异往往导致疾病。在单个经表型鉴定的细胞中监测与疾病相关的基因表达的协同变化的能力,将为细胞表达的遗传变异性提供独特的见解,并可能为产生疾病病因的潜在细胞机制提供意想不到的见解。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验