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Detection of activated neutrophils by reactive oxygen species production using a hematology analyzer

机译:使用血液学分析仪检测反应性氧物种生产活性嗜中性粒细胞

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Neutrophils are recruited to infection sites and kill bacteria by phagocytosis and reactive oxygen species (ROS) production. It has been reported that vacuoles are present in neutrophils that produce ROS and are present in large numbers in blood smears of patients with bacterial infections. The leukocyte differentiation function on the Sysmex automated hematology analyzer classifies leukocytes by flow cytometry. Particularly, side-scattered light is known to reflect the quantity of organelles.This study investigated the possibility of detecting vacuoles or invagination of cell membrane in neutrophils producing ROS using a hematology analyzer.Whole blood and polymorphonuclear (PMN) cell fractions were activated with phorbol myristate acetate (PMA) or formylmethionylleucylphenylalanine (fMLP) and analyzed using the Sysmex XE-2100 automated hematology analyzer. PMN fractions were morphologically analyzed with a confocal laser scanning microscope (CLSM), electron microscope (EM), andgeneral-purposeconventional flow cytometer.In the white blood cell differentiation scattergram obtained in this analysis, a new cluster separate from the original neutrophil cluster appeared in the eosinophil area in an area of higher side-scattering (SSC) intensity. Flow cytometry analysis of the PMN fractions revealed that the cells in this new cluster were CD16b- and APF-positive, indicating that the cells were activated neutrophils that produced ROS. CLSM and EM findings revealed that ROS production occurred in the cytoplasm and that the activated neutrophils containedsomevacuole-like structuresof vacuolesor invagination of cell membrane.Vacuole-likeSstructures were found within the cytoplasm of neutrophils producing ROS. These neutrophils were detected as an independent cluster in the eosinophil area with higher SSC intensity than that shown by neutrophils in the traditional cluster on the white blood cell differentiation scattergram, likely because the vacuole-like structures increased the SSC intensity.
机译:中性粒细胞通过吞噬作用和活性氧(ROS)生产来募集到感染遗迹并杀死细菌。据报道,液泡存在于产生ROS的中性粒细胞中,并且存在于细菌感染患者的血液涂片中的大量含量。 Sysmex自动化血液分析仪上的白细胞分化功能通过流式细胞术分类白细胞。特别地,已知侧散的光反映了细胞器的量。本研究研究了使用血液学分析仪在产生ROS中的中性粒细胞中检测泡沫或对细胞膜的侵袭的可能性。用Phorbol激活血液和多环核(PMN)细胞级分醋酸酯(PMA)或甲醛甲基硫基苯丙氨酸(FMLP),并使用Sysmex XE-2100自动血液分析仪进行分析。用共聚焦激光扫描显微镜(CLSM),电子显微镜(EM),和一般 - 用途血型流动筛分,PMN级分在形态学上分析。在该分析中获得的白血细胞分化散射仪中,从原始中性粒细胞集群中分离的新簇嗜酸性粒细胞面积在较高侧散射(SSC)强度的区域。 PMN级分的流式细胞术分析表明,该新簇中的细胞是CD16B-和APF阳性的,表明细胞是产生ROS的活性嗜中性粒细胞。 CLSM和EM结果显示,在细胞质中发生ROS产生,并且活化的嗜中性粒细胞含有血管膜的血管膜的血管膜的血管内肠道侵入性的血管膜瘤的内源粒细胞的侵袭。在产生ROS的细胞质内发现。将这些中性粒细胞被检测为嗜酸性粒细胞区域中的独立簇,其SSC强度高于白细胞分化散射轨道上的传统集群中的中性粒细胞所示的强度,可能是因为液泡状结构增加了SSC强度。

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