Respiratory and Metabolic Responses of CD4 + T Cells to Acute Exercise and Their Association with Cardiorespiratory Fitness.

IF 4.1 2区 医学 Q1 SPORT SCIENCES Medicine and Science in Sports and Exercise Pub Date : 2024-10-01 Epub Date: 2024-05-15 DOI:10.1249/MSS.0000000000003483
Kristina Gebhardt, Anne Hebecker, Celine Honekamp, Svenja Nolte, Marek Barthkuhn, Jochen Wilhelm, Stephan Klatt, Christopher Weyh, Natascha Sommer, Karsten Krüger
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Abstract

Introduction: The study aimed to investigate to what extent acute endurance exercise, especially eccentric exercise and cardiorespiratory fitness, affects the metabolic profile of CD4 + cells.

Methods: Fifteen male, healthy adults aged between 20 and 33 yr with a maximal oxygen uptake (V̇O 2max ) between 44 and 63 mL·kg -1 ·min -1 performed a downhill run (DR) and a level run (LR) for 45 min at 70% of their V̇O 2max on a treadmill in a crossover design. Blood samples were taken before (T0), directly after (T1), 3 h after (T3), and 24 h (T24) after each exercise for analyzing leukocyte numbers and cytokine levels. Isolated CD4 + cells were incubated for 4 h in autologous resting versus 3 h after exercise serum (T3 DR and T3 LR), and subsequently, cellular respiration, transcriptomic, and metabolomics profiles were measured.

Results: The systemic immune inflammation index increased significantly after DR and LR at T1 and T3 ( P < 0.001). In contrast, the transcriptomic and metabolic profile of CD4 + cells showed no significant alterations after incubation in T3 exercise serum. However, cardiorespiratory fitness positively correlated with the maximal mitochondrial respiration in CD4 + cells after incubation with T3 LR serum ( r = 0.617, P = 0.033) and with gene expression of oxidative phosphorylation and levels of different metabolites. Similarly, V̇O 2max was associated with an anti-inflammatory profile on RNA level. Lower lactate, methylmalonic acid, and d -gluconic acid levels were found in CD4 + cells of participants with a high V̇O 2max ( P < 0.001).

Conclusions: Acute exercise leads to a mild proinflammatory milieu with only small changes in the metabolic homeostasis of CD4 + cells. High cardiorespiratory fitness is associated with a metabolic shift to oxidative phosphorylation in CD4 + cells. Functional relevance of this metabolic shift needs to be further investigated.

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CD4+ T 细胞对急性运动的呼吸和代谢反应及其与心肺功能的关系
简介:该研究旨在探讨急性耐力运动,尤其是偏心运动和心肺功能对 CD4+ 细胞代谢谱的影响程度:方法:15名年龄在20至33岁之间、最大摄氧量(VO2max)在44至63 ml/kg/min之间的男性健康成年人在跑步机上以70%的VO2max进行了45分钟的下坡跑(DR)和平地跑(LR)。在每次运动前(T0)、运动后(T1)、运动后 3 小时(T3)和运动后 24 小时(T24)采集血液样本,用于分析白细胞数量和细胞因子水平。将分离的 CD4+ 细胞在自体静息血清和运动后 3 小时血清(T3 DR 和 T3 LR)中培养 4 小时,然后测量细胞呼吸、转录组学和代谢组学特征:结果:在 T1 和 T3 DR 和 LR 后,全身免疫炎症指数明显增加(p < .001)。相比之下,CD4+细胞的转录组学和代谢组学特征在T3运动血清培养后没有发生明显变化。然而,心肺功能与 CD4+ 细胞在 T3 LR 血清培养后的线粒体最大呼吸量呈正相关(r = .617,p = .033),并与氧化磷酸化的基因表达和不同代谢物的水平呈正相关。同样,VO2max 也与 RNA 水平上的抗炎特征有关。VO2max值高的参与者的CD4+细胞中乳酸、甲基丙二酸和D-葡萄糖酸水平较低(p < .001):结论:急性运动会导致轻微的促炎症环境,而 CD4+ 细胞的代谢平衡只发生了很小的变化。高心肺功能与 CD4+ 细胞代谢转向氧化磷酸化有关。这种代谢转变的功能相关性有待进一步研究。
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来源期刊
CiteScore
7.70
自引率
4.90%
发文量
2568
审稿时长
1 months
期刊介绍: Medicine & Science in Sports & Exercise® features original investigations, clinical studies, and comprehensive reviews on current topics in sports medicine and exercise science. With this leading multidisciplinary journal, exercise physiologists, physiatrists, physical therapists, team physicians, and athletic trainers get a vital exchange of information from basic and applied science, medicine, education, and allied health fields.
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