Fletcher Oscar J, Tan Xun, Cortes Lucia, Gimeno Isabel
Poultry Health Management Team, Department of Population Health & Pathobiology, College of Veterinary Medicine, NC State University, 1060 William Moore Dr., Raleigh, NC 27607, United States.
Vet Immunol Immunopathol. 2012 May 15;146(3-4):225-36. doi: 10.1016/j.vetimm.2012.03.007. Epub 2012 Mar 15.
Cells expressing CD4, CD8, major histocompatibility complex (MHC) Class II, and macrophage biomarkers in lungs of chickens were quantified by measuring total area of antigen expressed using imageJ, a software program developed at the National Institutes of Health and available at no cost. The procedures reported here were rapid, and reproducible. Total area of antigen expressed had positive correlation with manual counts of cells expressing CD4 and CD8 biomarkers after inoculation with serotype 1 Marek's disease virus (MDV) vaccines. Visual inspection and overlays prepared from outlines of cells counted by imageJ confirmed agreement between antigen expression and area measured. Total area measured was not dependent on time of image acquisition from randomly selected fields from the same slides. Total area values were not computer specific, but acquisition of the original images required standardization of microscope used and camera setup. All steps in the process from sample collection through sectioning, staining, and image acquisition must be standardized as much as possible. Chickens infected with a very virulent+ (vv(+)) isolate of MDV (648A) had increased CD4, CD8, MHC Class II, and macrophage biomarker expression compared to noninfected control chickens at 10 days post infection, but variable responses depending on the specific biomarker measured at 3 and 5 days post infection. The procedure described here is faster and more reproducible than manual counting in cases (CD4 and CD8) where the number of positive cells is low enough for manual counts. Manual counting is not possible with MHC Class II and macrophage antigens nor when CD4(+) cells are present in large numbers following proliferation to tumors, thus subjective systems are used for scoring in these conditions. Using imageJ as described eliminates the need for subjective and less reproducible methods for measuring expression of these antigens.
通过使用美国国立卫生研究院开发的免费软件程序ImageJ测量抗原表达的总面积,对鸡肺中表达CD4、CD8、主要组织相容性复合体(MHC)II类和巨噬细胞生物标志物的细胞进行了定量。此处报道的程序快速且可重复。接种1型马立克氏病病毒(MDV)疫苗后,抗原表达的总面积与表达CD4和CD8生物标志物的细胞的手动计数呈正相关。通过对ImageJ计数的细胞轮廓进行目视检查和叠加,证实了抗原表达与测量面积之间的一致性。测量的总面积不依赖于从同一张载玻片的随机选择区域获取图像的时间。总面积值不依赖于计算机,但获取原始图像需要对所用显微镜和相机设置进行标准化。从样本采集到切片、染色和图像采集的过程中的所有步骤都必须尽可能标准化。与未感染的对照鸡相比,感染MDV强毒+(vv(+))毒株(648A)的鸡在感染后10天,其CD4、CD8、MHC II类和巨噬细胞生物标志物表达增加,但在感染后3天和5天,根据所测量的特定生物标志物,反应有所不同。在阳性细胞数量足够少以便进行手动计数的情况下(CD4和CD8),此处描述的程序比手动计数更快且更可重复。对于MHC II类和巨噬细胞抗原,以及当CD4(+)细胞在肿瘤增殖后大量存在时,无法进行手动计数,因此在这些情况下使用主观系统进行评分。使用所描述的ImageJ消除了测量这些抗原表达时对主观且重复性较差的方法的需求。