Gallup Jack M, Kawashima Kenji, Lucero Ginger, Ackermann Mark R
Department of Veterinary Pathology, College of Veterinary Medicine, Iowa State University, Ames, Iowa 50011-1250, USA.
Biol Proced Online. 2005;7:70-92. doi: 10.1251/bpo107. Epub 2005 May 30.
We describe a new approach for reliably isolating one-step real-time quantitative RT-PCR-quality RNA from laser captured cells retrieved from frozen sections previously subjected to immunofluorescent immunohistochemistry (IF-IHC) and subsequently subjected to fluorogenic one-step real-time RT-PCR analysis without the need for costly, time-consuming linear amplification. One cell's worth of RNA can now be interrogated with confidence. This approach represents an amalgam of technologies already offered commercially by Applied Biosystems, Arcturus and Invitrogen. It is the primary focus of this communication to expose the details and execution of an important new LCM RNA isolation technique, but also provide a detailed account of the IF-IHC procedure preceding RNA isolation, and provide information regarding our approach to fluorogenic one-step real-time RT-PCR in general. Experimental results shown here are meant to supplement the primary aim and are not intended to represent a complete scientific study. It is important to mention, that since LCM-RT-PCR is still far less expensive than micro-array analysis, we feel this approach to isolating RNA from LCM samples will be of continuing use to many researchers with limited budgets in the years ahead.
我们描述了一种新方法,可从冷冻切片中经免疫荧光免疫组织化学(IF-IHC)处理后再经荧光定量一步法实时逆转录聚合酶链反应(RT-PCR)分析的激光捕获细胞中可靠地分离出用于一步法实时定量RT-PCR的高质量RNA,而无需进行昂贵且耗时的线性扩增。现在可以放心地对单个细胞的RNA进行检测。该方法融合了应用生物系统公司、Arcturus公司和英杰公司已商业化提供的技术。本通讯的主要重点是揭示一种重要的新型激光捕获显微切割(LCM)RNA分离技术的细节和操作方法,同时详细介绍RNA分离之前的IF-IHC程序,并提供关于我们一般荧光定量一步法实时RT-PCR方法的信息。此处所示的实验结果旨在补充主要目的,并非代表完整的科学研究。需要指出的是,由于LCM-RT-PCR仍比微阵列分析便宜得多,我们认为这种从LCM样本中分离RNA的方法在未来几年将继续被许多预算有限的研究人员所采用。