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Multi-dimensional flow cytometry analysis reveals increasing changes in the systemic neutrophil compartment during seven consecutive days of endurance exercise

机译:多维流式细胞仪分析显示,在连续7天的耐力运动中,系统性中性粒细胞区室的变化不断增加

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摘要

Endurance exercise is associated with a transient increase in neutrophil counts in the peripheral blood. Here we investigate the impact of intensified endurance exercise on the neutrophil compartment. We hypothesized that intensified endurance exercise leads to mobilization of neutrophil subsets, which are normally absent in the blood. Furthermore, we followed the potential build-up of neutrophil activation and the impact on overnight recovery of the neutrophil compartment during a seven-day cycling tour. The neutrophil compartment was studied in 28 healthy amateur cyclists participating in an eight-day strenuous cycling tour. Blood samples were taken at baseline, after 4 days and after 7 days of cycling. The neutrophil compartment was analyzed in terms of numbers and its phenotype by deep phenotyping of flow cytometry data with the multi-dimensional analysis method FLOOD. Repeated endurance exercise led to a gradual increase in total neutrophil counts over the days leading to a 1.26 fold-increase (95%CI 1.01–1.51 p = 0.0431) in the morning of day 8. Flow cytometric measurements revealed the appearance of 2 additional neutrophil subsets: CD16brightCD62Ldim and CD16dimCD62Lbright. A complex change in neutrophil phenotypes was present characterized by decreased expression of both CD11b and CD62L and marked increased expression of LAIR-1, VLA-4 and CBRM1/5. The changes in expression were found on all neutrophils present in the blood. Strikingly, in strong contrast to our findings during acute inflammation evoked by LPS challenge, these neutrophils did not upregulate classical degranulation markers. In fact, our FLOOD analysis revealed that the exercise induced neutrophil phenotype did not overlap with the neutrophil subsets arising upon acute inflammation. In conclusion, during multiple days of endurance exercise the neutrophil compartment does not regain homeostasis overnight. Thereby our study supports the concept of a build-up of inflammatory cues during repeated endurance exercise training, causing a prolonged change of the systemic neutrophil compartment.
机译:耐力运动与外周血中性粒细胞计数的短暂增加有关。在这里,我们研究了增强耐力运动对嗜中性白细胞隔室的影响。我们假设强化的耐力运动会导致中性粒细胞亚群的动员,而中性粒细胞亚群通常是血液中不存在的。此外,在为期7天的自行车旅行中,我们追踪了嗜中性粒细胞活化的潜在积累以及对嗜中性粒细胞隔夜恢复的影响。在参加为期八天的剧烈自行车旅行的28位健康业余自行车手中研究了嗜中性白细胞区室。在基线,循环4天和7天后采集血样。用多维分析方法FLOOD通过流式细胞术数据的深表型分析中性粒细胞区室的数目及其表型。重复的耐力运动导致中性白细胞总数逐渐增加,导致第8天早晨增加1.26倍(95%CI 1.01–1.51 p = 0.0431),流式细胞仪检测显示又出现了2个中性白细胞子集:CD16 CD62L dim 和CD16 dim CD62L bright 。存在中性粒细胞表型的复杂变化,其特征在于CD11b和CD62L的表达均降低,而LAIR-1,VLA-4和CBRM1 / 5的表达则明显升高。在血液中存在的所有中性粒细胞中发现了表达的变化。令人惊讶的是,与我们在LPS激发引起的急性炎症期间的发现形成强烈对比,这些中性粒细胞并未上调经典脱粒标记物。实际上,我们的FLOOD分析表明,运动诱发的中性粒细胞表型与急性炎症引起的中性粒细胞亚型没有重叠。总之,在耐力运动的多天中,嗜中性白细胞隔间不会在一夜之间恢复体内平衡。因此,我们的研究支持了在反复的耐力运动训练过程中发炎线索积累的概念,从而引起全身中性粒细胞间隔的长期改变。

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