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三种白血病模型的免疫表型。

The Immune Phenotype of Three Leukemia Models.

机构信息

Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University, SE-106 91, Sweden.

Department of Animal Physiology and Immunology, Institute of Experimental Biology, Faculty of Science, Masaryk University, 611 37 Brno, Czech Republic.

出版信息

G3 (Bethesda). 2017 Jul 5;7(7):2139-2149. doi: 10.1534/g3.117.039487.

Abstract

Many leukemia patients suffer from dysregulation of their immune system, making them more susceptible to infections and leading to general weakening (cachexia). Both adaptive and innate immunity are affected. The fruit fly has an innate immune system, including cells of the myeloid lineage (hemocytes). To study immunity and physiology during leukemia, we established three models by driving expression of a dominant-active version of the Ras oncogene ( ) alone or combined with knockdowns of tumor suppressors in hemocytes. Our results show that phagocytosis, hemocyte migration to wound sites, wound sealing, and survival upon bacterial infection of leukemic lines are similar to wild type. We find that in all leukemic models the two major immune pathways (Toll and Imd) are dysregulated. Toll-dependent signaling is activated to comparable extents as after wounding wild-type larvae, leading to a proinflammatory status. In contrast, Imd signaling is suppressed. Finally, we notice that adult tissue formation is blocked and degradation of cell masses during metamorphosis of leukemic lines, which is akin to the state of cancer-dependent cachexia. To further analyze the immune competence of leukemic lines, we used a natural infection model that involves insect-pathogenic nematodes. We identified two leukemic lines that were sensitive to nematode infections. Further characterization demonstrates that despite the absence of behavioral abnormalities at the larval stage, leukemic larvae show reduced locomotion in the presence of nematodes. Taken together, this work establishes new models to study the physiological, immunological, and behavioral consequences of various forms of leukemia.

摘要

许多白血病患者的免疫系统失调,使他们更容易受到感染,并导致全身虚弱(恶病质)。适应性免疫和固有免疫都受到影响。果蝇具有固有免疫系统,包括髓系细胞(血细胞)。为了研究白血病期间的免疫和生理,我们通过单独或联合敲低血细胞中的肿瘤抑制因子来驱动 Ras 癌基因的显性激活形式的表达,建立了三种模型。我们的结果表明,吞噬作用、血细胞向伤口部位迁移、伤口封闭以及在细菌感染时的存活能力与野生型相似。我们发现,在所有白血病模型中,两种主要的免疫途径(Toll 和 Imd)都失调了。 Toll 依赖性信号被激活到与野生型幼虫受伤后相当的程度,导致炎症状态。相比之下,Imd 信号被抑制。最后,我们注意到,成年组织形成被阻断,白血病细胞系在变态期间细胞块的降解类似于癌症依赖性恶病质的状态。为了进一步分析白血病细胞系的免疫能力,我们使用了一种涉及昆虫病原线虫的天然感染模型。我们鉴定出两种对线虫感染敏感的白血病细胞系。进一步的特征表明,尽管在幼虫阶段没有行为异常,但白血病幼虫在存在线虫时表现出运动能力下降。总之,这项工作建立了新的模型来研究各种形式白血病的生理、免疫和行为后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/587c/5499123/3d58435a6fb7/2139f1.jpg

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