Csordás Gábor, Varga Gergely I B, Honti Viktor, Jankovics Ferenc, Kurucz Éva, Andó István
Immunology Unit, Institute of Genetics, Biological Research Centre of the Hungarian Academy of Sciences, Szeged, Hungary.
Developmental Genetics Unit, Institute of Genetics, Biological Research Centre of the Hungarian Academy of Sciences, Szeged, Hungary.
PLoS One. 2014 Jun 3;9(6):e98191. doi: 10.1371/journal.pone.0098191. eCollection 2014.
In recent years, Drosophila melanogaster has become an attractive model organism in which to study the structure and development of the cellular immune components. The emergence of immunological markers greatly accelerated the identification of the immune cells (hemocytes), while the creation of genetic reporter constructs allowed unique insight into the structural organization of hematopoietic tissues. However, investigation of the hemocyte compartments by the means of immunological markers requires dissection and fixation, which regularly disrupt the delicate structure and hamper the microanatomical characterization. Moreover, the investigation of transgenic reporters alone can be misleading as their expression often differs from the native expression pattern of their respective genes. We describe here a method that combines the reporter constructs and the immunological tools in live imaging, thereby allowing use of the array of available immunological markers while retaining the structural integrity of the hematopoietic compartments. The procedure allows the reversible immobilization of Drosophila larvae for high-resolution confocal imaging and the time-lapse video analysis of in vivo reporters. When combined with our antibody injection-based in situ immunostaining assay, the resulting double labeling of the hemocyte compartments can provide new information on the microanatomy and functional properties of the hematopoietic tissues in an intact state. Although this method was developed to study the immune system of Drosophila melanogaster, we anticipate that such a combination of genetic and immunological markers could become a versatile technique for in vivo studies in other biological systems too.
近年来,黑腹果蝇已成为一种极具吸引力的模式生物,用于研究细胞免疫成分的结构和发育。免疫标记物的出现极大地加速了免疫细胞(血细胞)的识别,而基因报告构建体的创建则使人们能够对造血组织的结构组织有独特的见解。然而,通过免疫标记物研究血细胞区室需要解剖和固定,这经常会破坏精细的结构并妨碍微观解剖学特征的描述。此外,仅对转基因报告基因进行研究可能会产生误导,因为它们的表达往往与各自基因的天然表达模式不同。我们在此描述一种方法,该方法将报告构建体和免疫工具结合用于活体成像,从而在保留造血区室结构完整性的同时,能够使用一系列可用的免疫标记物。该程序允许对果蝇幼虫进行可逆固定,以进行高分辨率共聚焦成像和对体内报告基因进行延时视频分析。当与我们基于抗体注射的原位免疫染色测定相结合时,血细胞区室的双重标记可以为完整状态下造血组织的微观解剖学和功能特性提供新信息。尽管该方法是为研究黑腹果蝇的免疫系统而开发的,但我们预计这种基因和免疫标记物的组合也可能成为其他生物系统体内研究的一种通用技术。