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冷冻保存对人外周血白细胞生物能量学的影响。

The impact of cryopreservation on human peripheral blood leucocyte bioenergetics.

出版信息

Clin Sci (Lond). 2015 May 1;128(10):723-33. doi: 10.1042/CS20140725.

Abstract

Circulating immune cells are considered a source for biomarkers in health and disease, since they are exposed to nutritional, metabolic and immunological stimuli in the vasculature. Cryopreservation of leucocytes is routinely used for long-term storage and determination of phenotypic/functional changes at a later date. Exploring the role of bioenergetics and mitochondrial (dys)function in leucocytes is often examined by using freshly isolated cells. The aim of the pilot study described herein was to assess leucocyte bioenergetics in cryopreserved cells. Leucocytes were isolated from whole blood, counted and frozen in liquid nitrogen (LN2) for a period of 3 months. Cells were thawed at regular intervals and bioenergetic analysis performed using the Seahorse XFe96 flux analyser. Cryogenic storage reduced cell viability by 20%, but cell bioenergetic responses were largely intact for up to 1 month storage in LN2. However, after 1 month storage, mitochondrial function was impaired as reflected by decreasing basal respiration, ATP production, maximum (MAX) respiration, reserve capacity and coupling efficiency. Conversely, glycolytic activity was increased after 1 month, most notably the enhanced glycolytic response to 25 mM glucose without any change in glycolytic capacity. Finally, calculation of bioenergetic health index (BHI) demonstrated that this potential diagnostic parameter was sensitive to cryopreservation. The present study has demonstrated for the first time that cryopreservation of primary immune cells modified their metabolism in a time-dependent fashion, indicated by attenuated aerobic respiration and enhanced glycolytic activity. Taken together, we recommend caution in the interpretation of bioenergetic responses or BHI in cryopreserved samples.

摘要

循环免疫细胞被认为是健康和疾病生物标志物的来源,因为它们在血管中暴露于营养、代谢和免疫刺激。白细胞的冷冻保存通常用于长期储存,并在以后确定表型/功能变化。通过使用新鲜分离的细胞,经常探索白细胞生物能量学和线粒体(功能障碍)在白细胞中的作用。本文描述的初步研究旨在评估冷冻保存细胞中的白细胞生物能量学。将白细胞从全血中分离出来,计数并在液氮(LN2)中冷冻 3 个月。定期解冻细胞,并使用 Seahorse XFe96 通量分析仪进行生物能量分析。低温储存使细胞活力降低了 20%,但细胞生物能量反应在 LN2 中储存长达 1 个月时基本完整。然而,在储存 1 个月后,线粒体功能受损,表现为基础呼吸、ATP 产生、最大(MAX)呼吸、储备能力和偶联效率降低。相反,糖酵解活性在 1 个月后增加,尤其是在 25mM 葡萄糖刺激下增强的糖酵解反应,而糖酵解能力没有任何变化。最后,生物能量健康指数(BHI)的计算表明,这个潜在的诊断参数对冷冻保存敏感。本研究首次表明,冷冻保存原代免疫细胞以时间依赖的方式改变了它们的代谢,表现为有氧呼吸减弱和糖酵解活性增强。总之,我们建议在解释冷冻保存样本中的生物能量反应或 BHI 时要谨慎。

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