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首页> 外文期刊>The journal of immunology >A High-Throughput Real-Time Imaging Technique To Quantify NETosis and Distinguish Mechanisms of Cell Death in Human Neutrophils
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A High-Throughput Real-Time Imaging Technique To Quantify NETosis and Distinguish Mechanisms of Cell Death in Human Neutrophils

机译:高通量实时成像技术,以量化中性粒细胞的netosis和细胞死亡的识别机制。

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摘要

Neutrophils play a key role in host defenses and have recently been implicated in the pathogenesis of autoimmune diseases by various mechanisms, including formation of neutrophil extracellular traps through a recently described distinct form of programmed cell death called NETosis. Techniques to assess and quantitate NETosis in an unbiased, reproducible, and efficient way are lacking, considerably limiting the advancement of research in this field. We optimized and validated, a new method to automatically quantify the percentage of neutrophils undergoing NETosis in real time using the IncuCyte ZOOM imaging platform and the membrane-permeability properties of two DNA dyes. Neutrophils undergoing NETosis induced by various physiological stimuli showed distinct changes, with a loss of multilobulated nuclei, as well as nuclear decondensation followed by membrane compromise, and were accurately counted by applying filters based on fluorescence intensity and nuclear size. Findings were confirmed and validated with the established method of immunofluorescence microscopy. The platform was also validated to rapidly assess and quantify the dose-dependent effect of inhibitors of NETosis. In addition, this method was able to distinguish among neutrophils undergoing NETosis, apoptosis, or necrosis based on distinct changes in nuclear morphology and membrane integrity. The IncuCyte ZOOM platform is a novel real-time assay that quantifies NETosis in a rapid, automated, and reproducible way, significantly optimizing the study of neutrophils. This platform is a powerful tool to assess neutrophil physiology and NETosis, as well as to swiftly develop and test novel neutrophil targets.
机译:中性粒细胞在宿主防御中起着关键作用,最近通过多种机制参与了自身免疫性疾病的发病机制,包括通过最近描述的独特形式的程序性细胞死亡称为NETosis形成中性粒细胞外陷阱。缺乏以公正,可再现和有效的方式评估和定量NETosis的技术,极大地限制了该领域的研究进展。我们优化并验证了一种新方法,该方法使用IncuCyte ZOOM成像平台和两种DNA染料的膜通透性,可以实时自动实时定量中性粒细胞发生NETosis的百分比。经历各种生理刺激引起的NETosis的中性粒细胞表现出明显的变化,失去了多叶核,核解聚,随后膜受损,并通过基于荧光强度和核大小的过滤器进行了精确计数。所建立的免疫荧光显微镜检查方法证实并验证了结果。该平台还经过验证,可以快速评估和量化NETosis抑制剂的剂量依赖性作用。此外,这种方法能够根据核形态和膜完整性的明显变化来区分经历NETosis,细胞凋亡或坏死的中性粒细胞。 IncuCyte ZOOM平台是一种新颖的实时测定法,可以快速,自动化和可重复的方式对NETosis进行定量,从而极大地优化了嗜中性粒细胞的研究。该平台是评估中性粒细胞生理和NETosis以及快速开发和测试新型中性粒细胞靶标的强大工具。

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