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首页> 外文期刊>Journal of Immunological Methods >Impact of blood processing variations on natural killer cell frequency, activation, chemokine receptor expression and function.
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Impact of blood processing variations on natural killer cell frequency, activation, chemokine receptor expression and function.

机译:血液加工变化对自然杀伤细胞频率,激活,趋化因子受体表达和功能的影响。

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Understanding the role of natural killer (NK) cells in human disease pathogenesis is crucial and necessitates study of patient samples directly ex vivo. Manipulation of whole blood by density gradient centrifugation or delays in sample processing due to shipping, however, may lead to artifactual changes in immune response measures. Here, we assessed the impact of density gradient centrifugation and delayed processing of both whole blood and peripheral blood mononuclear cells (PBMC) at multiple timepoints (2-24 h) on flow cytometric measures of NK cell frequency, activation status, chemokine receptor expression, and effector functions. We found that density gradient centrifugation activated the NK cells and modified the chemokine receptor expression. Delays in processing beyond 8h activated NK cells in PBMC but not in whole blood. Likewise, processing delays decreased chemokine receptor (CCR4 and CCR7) expression in both PBMC and whole blood. Finally, delays in processing PBMC were associated with a decreased ability of NK cells to degranulate (as measured by CD107a expression) or secrete cytokines (IFN-gamma and TNF-alpha). In summary, our findings suggest that density gradient centrifugation and delayed processing of PBMC can alter measures of clinically relevant NK cell characteristics including effector functions; and therefore should be taken into account in designing clinical research studies.
机译:了解自然杀伤(NK)细胞在人类疾病发病机理中的作用至关重要,因此有必要直接体外研究患者样品。但是,由于密度梯度离心或由于运输而导致的样品处理延迟,全血操作可能会导致免疫反应措施的人为变化。在这里,我们评估了密度梯度离心和全血和外周血单核细胞(PBMC)在多个时间点(2-24小时)的延迟对NK细胞频率,激活状态,趋化因子受体表达,和效应器功能。我们发现密度梯度离心激活了NK细胞并修饰了趋化因子受体的表达。 PBMC中超过8h激活的NK细胞的处理延迟,但全血中则没有。同样,处理延迟降低了PBMC和全血中趋化因子受体(CCR4和CCR7)的表达。最后,处理PBMC的延迟与NK细胞脱颗粒(通过CD107a表达测量)或分泌细胞因子(IFN-γ和TNF-α)的能力降低有关。总之,我们的发现表明,PBMC的密度梯度离心和延迟加工可以改变临床相关NK细胞特征(包括效应子功能)的量度。因此在设计临床研究时应考虑到这一点。

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