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Fluorescence-activated cell sorting (FACS) of Drosophila hemocytes reveals important functional similarities to mammalian leukocytes

机译:果蝇血细胞的荧光激活细胞分选(FACS)显示与哺乳动物白细胞重要的功能相似性

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摘要

Drosophila is a powerful model for molecular studies of hematopoiesis and innate immunity. However, its use for functional cellular studies remains hampered by the lack of single-cell assays for hemocytes (blood cells). Here we introduce a generic method combining fluorescence-activated cell sorting and nonantibody probes that enables the selective gating of live Drosophila hemocytes from the lymph glands (larval hematopoietic organ) or hemolymph (blood equivalent). Gated live hemocytes are analyzed and sorted at will based on precise quantitation of fluorescence levels originating from metabolic indicators, lectins, reporters (GFP and β-galactosidase) and antibodies. With this approach, we discriminate and sort plasmatocytes, the major hemocyte subset, from lamellocytes, an activated subset present in gain-of-function mutants of the Janus kinase and Toll pathways. We also illustrate how important, evolutionarily conserved, blood-cell-regulatory molecules, such as calcium and glutathione, can be studied functionally within hemocytes. Finally, we report an in vivo transfer of sorted live hemocytes and their successful reanalysis on retrieval from single hosts. This generic and versatile fluorescence-activated cell sorting approach for hemocyte detection, analysis, and sorting, which is efficient down to one animal, should critically enhance in vivo and ex vivo hemocyte studies in Drosophila and other species, notably mosquitoes.
机译:果蝇是进行血细胞生成和先天免疫分子研究的强大模型。然而,由于缺乏针对血细胞(血细胞)的单细胞检测,其在功能性细胞研究中的应用仍然受到阻碍。在这里,我们介绍了一种结合了荧光激活细胞分选和非抗体探针的通用方法,该方法能够从淋巴腺(幼虫造血器官)或血淋巴(血当量)中选择性地选出果蝇活血细胞。基于对代谢指标,凝集素,报道分子(GFP和β-半乳糖苷酶)和抗体产生的荧光水平的精确定量,可以随意对门控活血细胞进行分析和分类。通过这种方法,我们从纤毛细胞(主要存在于Janus激酶和Toll途径的功能获得性突变体中的活化子集)中区分并分类了主要血细胞亚群的浆细胞。我们还说明了如何在血细胞内功能性地研究进化保守的血细胞调节分子,例如钙和谷胱甘肽。最后,我们报告了在活体内转移后的活血细胞的转移及其从单个宿主中检索成功的再分析。这种对血细胞检测,分析和分选的通用且通用的荧光激活细胞分选方法(仅对一只动物有效),应严格增强果蝇和其他物种(尤其是蚊子)的体内和离体血细胞研究。

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