Barroso-Chinea Pedro, Aymerich María S, Castle María M, Pérez-Manso Mónica, Tuñón Teresa, Erro Elena, Lanciego José L
Basal Ganglia Neuromorphology Laboratory, Neuroscience Division, Center for Applied Medical Research, University of Navarra Medical College, Pio XII Avenue 55, 31008 Pamplona, Spain.
J Neurosci Methods. 2007 May 15;162(1-2):119-28. doi: 10.1016/j.jneumeth.2006.12.017. Epub 2007 Jan 12.
We have compared the performance of two methods designed to simultaneously detect two different mRNAs within a single brain section by dual ISH. Specific mRNA riboprobes labeled with biotin and digoxigenin were simultaneously hybridized and visualized using either brightfield or fluorescence microscopy. For brightfield visualization, the biotin-labeled riboprobe was detected with a peroxidase chromogen, whereas, an alkaline phosphatase substrate was used for the detection of the digoxigenin-labeled riboprobe. Dual fluorescent ISH involved the detection of the biotin-labeled riboprobe with an Alexa((R))488-conjugated streptavidin followed by the visualization of the digoxigenin-labeled riboprobe with the red fluorescent substrate HNPP. The dual ISH protocols presented here offer sensitive methods to detect the expression of two mRNAs of interest, with both colorimetric and fluorescent ISH each having its strengths and limitations. For example, dual colorimetric ISH has proven to be particularly useful to study the distribution of two mRNAs in different brain nuclei, whereas, dual fluorescent ISH has provided better results when studying the co-localization of two different mRNAs in single neurons. The comprehensive step-by-step procedure is presented, together with a troubleshooting section in which the advantages and limitations of these procedures are reviewed in depth. Moreover, alternative protocols for dual ISH were also compared to those presented here.
我们比较了两种旨在通过双重原位杂交在单个脑切片中同时检测两种不同mRNA的方法的性能。用生物素和地高辛配基标记的特异性mRNA核糖探针同时进行杂交,并使用明场或荧光显微镜进行可视化。对于明场可视化,用一种过氧化物酶显色剂检测生物素标记的核糖探针,而用碱性磷酸酶底物检测地高辛配基标记的核糖探针。双重荧光原位杂交包括用Alexa((R))488偶联的链霉亲和素检测生物素标记的核糖探针,然后用红色荧光底物HNPP可视化地高辛配基标记的核糖探针。本文介绍的双重原位杂交方案提供了检测两种感兴趣的mRNA表达的灵敏方法,比色法和荧光原位杂交各有优缺点。例如,双重比色原位杂交已被证明对研究两种mRNA在不同脑核中的分布特别有用,而在研究两种不同mRNA在单个神经元中的共定位时,双重荧光原位杂交提供了更好的结果。文中给出了详细的分步操作步骤,以及一个故障排除部分,其中深入回顾了这些操作步骤的优缺点。此外,还将双重原位杂交的替代方案与本文介绍的方案进行了比较。