Glynn Marian W, McAllister A Kimberley
University of California, Davis, Center for Neuroscience, 1544 Newton Court, Davis, California 95616, USA.
Nat Protoc. 2006;1(3):1287-96. doi: 10.1038/nprot.2006.220.
This protocol details a method to quantify the distribution of protein and colocalization in neuronal cultures. To that end, this protocol includes itemized steps and considerations for performing immunocytochemistry, acquiring fluorescence images and quantifying multichannel fluorescence images. Success in quantifying immunostained neurons relies on the accessibility of the proteins of interest, the sensitivity and specificity of antibodies, the signal-to-noise ratio of the collected image and the sensitivity of the quantification method. In contrast to other commonly employed methods for quantification, the protocol detailed here requires manual selection of punctae and subtraction of background selected for each neurite. This approach reliably and uniquely allows for detection of proteins in low signal-to-noise ratio images, which are characteristic of developing neurons. Thus, this method serves an important niche in image analysis poorly addressed by alternative published methods. In general, immunocytochemistry requires 3.5-7 h, and one triple-immunostained neuron can be quantified in 1.5 h.
本方案详细介绍了一种量化神经元培养物中蛋白质分布和共定位的方法。为此,本方案包括进行免疫细胞化学、获取荧光图像和量化多通道荧光图像的详细步骤及注意事项。成功量化免疫染色神经元依赖于目标蛋白的可及性、抗体的敏感性和特异性、采集图像的信噪比以及量化方法的敏感性。与其他常用的量化方法不同,此处详述的方案需要手动选择斑点并减去为每个神经突选择的背景。这种方法可靠且独特地允许在低信噪比图像中检测蛋白质,而低信噪比图像是发育中神经元的特征。因此,该方法在替代已发表方法未充分解决的图像分析中占据重要的细分领域。一般来说,免疫细胞化学需要3.5 - 7小时,一个三重免疫染色的神经元可在1.5小时内完成量化。