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首页> 外文期刊>Life sciences >Accelerated destruction of erythrocytes in Tie2 promoter-driven STAT3 conditional knockout mice
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Accelerated destruction of erythrocytes in Tie2 promoter-driven STAT3 conditional knockout mice

机译:Tie2启动子驱动的STAT3条件敲除小鼠中红细胞的加速破坏

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摘要

Aims STAT3 is a key modulator of activation and differentiation of macrophages. But it is still unknown if deficiency of STAT3 activates macrophages to destroy erythrocytes by phagocytosis. We generated STAT3 conditional knockout mice by crossing floxed STAT3 mice with Tie2 promoter-driven Cre-recombinase transgenic mice and clarified that Stat3 plays a critical role in the formation and activation of macrophages. Main methods Blood cell count, reticulocyte count, serum lactate dehydrogenase, erythropoietin, iron and ferritin concentration, and life span of the erythrocytes in Tie2 promoter-driven STAT3 conditional knockout mice were analyzed. To explore the erythropoietic function of the mice, we subjected them to brief hemolytic anemia by injecting them intraperitoneally with phenylhydrazine. The fragility of erythrocytes was examined by scanning electron microscopy and osmotic tolerance test. Key findings The conditional knockout mice had mild normocytic anemia. They also displayed higher lactate dehydrogenase, ferritin and erythropoietin concentration, higher reticulocyte count, and a shorter lifespan of erythrocytes compared with wild-type controls. These data suggest that destruction of erythrocytes and secondary blood formation were accelerated in the STAT3 conditional knockout mice. It didn't appear due to the fragility of erythrocytes. A few of the conditional knockout mice suddenly developed acute severe anemia, high body temperature and massive splenomegaly, and died within 2 weeks after the onset of anemia. Significance This study provided evidence that STAT3 have a critical role in the destruction of erythrocytes by resident macrophages in the spleen.
机译:STAT3的目标是激活和分化巨噬细胞的关键调节器。但是,尚不清楚STAT3的缺乏是否会通过吞噬作用激活巨噬细胞破坏红细胞。我们通过将Flox STAT3小鼠与Tie2启动子驱动的Cre-重组酶转基因小鼠杂交来产生STAT3条件性剔除小鼠,并阐明Stat3在巨噬细胞的形成和激活中起关键作用。主要方法分析了Tie2启动子驱动的STAT3条件敲除小鼠的血细胞计数,网织红细胞计数,血清乳酸脱氢酶,促红细胞生成素,铁和铁蛋白浓度以及红细胞寿命。为了探索小鼠的促红细胞功能,我们通过腹膜内注射苯肼使它们经历了短暂的溶血性贫血。红细胞的脆性通过扫描电子显微镜和渗透压耐受性测试来检查。主要发现有条件的基因敲除小鼠患有轻度正常性贫血。与野生型对照相比,它们还显示出更高的乳酸脱氢酶,铁蛋白和促红细胞生成素浓度,更高的网织红细胞计数以及更短的红细胞寿命。这些数据表明,在STAT3条件敲除小鼠中,红细胞的破坏和继发性血液的形成被加速。由于红细胞的脆性而没有出现。少数条件性基因敲除小鼠突然发展为急性严重贫血,体温升高和大量脾肿大,并在贫血发作后2周内死亡。意义这项研究提供了证据,表明STAT3在脾脏中的巨噬细胞破坏红细胞中起关键作用。

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