Microliter whole blood neutrophil assay preserving physiological lifespan and functional heterogeneity.

Chao Li, Nathan W Hendrikse, Makenna Mai, Mehtab A Farooqui, Zach Argall-Knapp, Jun Sung Kim, Emily A Wheat, Terry Juang
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Abstract

For in vitro neutrophil functional assays, neutrophils are typically isolated from whole blood, having the target cells exposed to an artificial microenvironment with altered kinetics. Isolated neutrophils exhibit limited lifespans of only a few hours ex vivo, significantly shorter than the 3-5 day lifespan of neutrophils in vivo. In addition, due to neutrophil inherently high sensitivity, neutrophils removed from whole blood exhibit stochastic non-specific activation that contributes to assay variability. Here we present a method - named micro-Blood - that enables functional neutrophil assays using a microliter of unprocessed whole blood. micro-Blood allows multiple phenotypic readouts of neutrophil function (including cell/nucleus morphology, motility, recruitment, and pathogen control). In micro-Blood, neutrophils show sustained migration and limited non-specific activation kinetics (<0.1% non-specific activation) over 3-6 days. In contrast, neutrophils isolated using traditional methods show increased and divergent activation kinetics (10-70% non-specific activation) in only 3 h. Finally, micro-Blood allows the capture and quantitative comparison of distinct neutrophil functional heterogeneity between healthy donors and cancer patients in response to microbial stimuli with the preserved physiological lifespan over 6 days.

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在微升全血中进行体外中性粒细胞功能测定,提取供体特异性信息长达数天。
对于体外中性粒细胞功能测定,分离的中性粒细胞通常用作标准输入。然而,分离的中性粒细胞在体外表现出不同且有限的寿命,短至仅几个小时,明显短于体内中性粒细胞长达3-5天的寿命。有限的测定时间窗口导致供体特异性信息的显著损失,这归因于中性粒细胞从全血中提取后的非特异性激活(即,在没有操作员定义的刺激的情况下的基线细胞死亡)。此外,由于中性粒细胞固有的高灵敏度,从全血中去除中性粒细胞会在从分析中提取的信息中产生操作员衍生的不一致。在这里,我们提出了一种名为“μ-血液”的方法,该方法支持使用微升未经处理的全血对中性粒细胞功能(包括细胞/细胞核形态、运动性、募集和病原体控制)进行长期(数天)的多表型读数。在自体全血中,中性粒细胞表现出持续迁移和有限的非特异性激活动力学[3天]。相反,分离的中性粒细胞显示出活化动力学的改变[10-70%的非特异性活化在3小时内,并减少(>90%)募集]。使用未经处理的全血,μ-血液通过长达数天的测定,捕捉到健康供体和癌症患者之间对抗微生物刺激的独特中性粒细胞功能异质性,显示了体外免疫测定的潜力,并随着时间的推移,改进了供体特异性信息的提取和测定的一致性。
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