Naciff Jorge M, Richardson Brian D, Oliver Kerry G, Jump M Lynn, Torontali Suzanne M, Juhlin Kenton D, Carr Gregory J, Paine Jennifer R, Tiesman Jay P, Daston George P
Miami Valley Innovation Center, Procter & Gamble Company, Cincinnati, OH 45253, USA.
Environ Health Perspect. 2005 Sep;113(9):1164-71. doi: 10.1289/ehp.7843.
Recently gene expression studies have been multiplied at an accelerated rate by the use of high-density microarrays. By assaying thousands of transcripts at a time, microarrays have led to the discovery of dozens of genes involved in particular biochemical processes, for example, the response of a tissue/organ to a given chemical with therapeutic or toxic properties. The next step in these studies is to focus on the response of a subset of relevant genes to verify or refine potential therapeutic or toxic properties. We have developed a sensitive, high-throughput gene expression assay for this purpose. In this assay, based on the Luminex xMAP system, carefully selected oligonucleotides were covalently linked to fluorescently coded microspheres that are hybridized to biotinylated cRNA followed by amplification of the signal, which results in a rapid, sensitive, multiplexed assay platform. Using this system, we have developed an RNA expression profiling assay specific for 17 estrogen-responsive transcripts and three controls. This assay can evaluate up to 100 distinct analytes simultaneously in a single sample, in a 96-well plate format. This system has improved sensitivity versus existing microsphere-based assays and has sensitivity and precision comparable with or better than microarray technology. We have achieved detection levels down to 1 amol, detecting rare messages in complex cRNA samples, using as little as 2.5 microg starting cRNA. This assay offers increased throughput with decreased costs compared with existing microarray technologies, with the trade-off being in the total number of transcripts that can be analyzed.
最近,通过使用高密度微阵列,基因表达研究的数量以加速的速度成倍增加。通过一次检测数千个转录本,微阵列已导致发现了数十个参与特定生化过程的基因,例如,组织/器官对具有治疗或毒性特性的特定化学物质的反应。这些研究的下一步是关注相关基因子集的反应,以验证或完善潜在的治疗或毒性特性。为此,我们开发了一种灵敏的、高通量的基因表达检测方法。在该检测方法中,基于Luminex xMAP系统,精心选择的寡核苷酸被共价连接到荧光编码的微球上,这些微球与生物素化的cRNA杂交,随后进行信号放大,从而产生一个快速、灵敏的多重检测平台。使用该系统,我们开发了一种针对17种雌激素反应性转录本和三个对照的RNA表达谱检测方法。该检测方法可以在96孔板形式的单个样本中同时评估多达100种不同的分析物。与现有的基于微球的检测方法相比,该系统提高了灵敏度,并且具有与微阵列技术相当或更好的灵敏度和精度。我们实现了低至1 amol的检测水平,能够在复杂的cRNA样本中检测到罕见的信息,起始cRNA用量低至2.5 μg。与现有的微阵列技术相比,该检测方法提高了通量并降低了成本,代价是可分析的转录本总数。