Bao Xiao-Chen, Shen Quan, Fang Yi-Qun, Wu Jian-Guo
Department of Diving and Hyperbaric Medicine, Naval Medical Center, Shanghai, China.
Department of Hyperbaric Medicine, Naval Hospital of Eastern Theater, Zhejiang, China.
Front Physiol. 2021 Sep 28;12:735986. doi: 10.3389/fphys.2021.735986. eCollection 2021.
The objective of this study was to explore whether a single deep helium-oxygen (heliox) dive affects physiological function. A total of 40 male divers performed an open-water heliox dive to 80 m of seawater (msw). The total diving time was 280 min, and the breathing helium-oxygen time was 20 min. Before and after the dive, blood and saliva samples were collected, and blood cell counts, cardiac damage, oxidative stress, vascular endothelial activation, and hormonal biomarkers were assayed. An 80 msw heliox dive induced a significant increase in the percentage of granulocytes (GR %), whereas the percentage of lymphocytes (LYM %), percentage of intermediate cells (MID %), red blood cell number (RBC), hematocrit (hCT), and platelets (PLT) decreased. During the dive, concentrations of creatine kinase (CK), a myocardial-specific isoenzyme of creatine kinase (CK-MB) in serum and amylase alpha 1 (AMY1), and testosterone levels in saliva increased, in contrast, IgA levels in saliva decreased. Diving caused a significant increase in serum glutathione (GSH) levels and reduced vascular cell adhesion molecule-1 (VCAM-1) levels but had no effect on malondialdehyde (MDA) and endothelin-1 (ET-1) levels. A single 80 msw heliox dive activates the endothelium, causes skeletal-muscle damage, and induces oxidative stress and physiological stress responses, as reflected in changes in biomarker concentrations.
本研究的目的是探讨单次深度氦氧(heliox)潜水是否会影响生理功能。共有40名男性潜水员进行了一次开放水域的氦氧潜水,深度达80米海水(msw)。总潜水时间为280分钟,呼吸氦氧时间为20分钟。在潜水前后,采集血液和唾液样本,并检测血细胞计数、心脏损伤、氧化应激、血管内皮激活和激素生物标志物。80 msw的氦氧潜水导致粒细胞百分比(GR%)显著增加,而淋巴细胞百分比(LYM%)、中间细胞百分比(MID%)、红细胞数量(RBC)、血细胞比容(hCT)和血小板(PLT)下降。在潜水过程中,血清中肌酸激酶(CK)、肌酸激酶心肌特异性同工酶(CK-MB)以及唾液中淀粉酶α1(AMY1)的浓度和唾液中睾酮水平升高,相反,唾液中IgA水平下降。潜水导致血清谷胱甘肽(GSH)水平显著升高,血管细胞黏附分子-1(VCAM-1)水平降低,但对丙二醛(MDA)和内皮素-1(ET-1)水平没有影响。单次80 msw的氦氧潜水会激活内皮,导致骨骼肌损伤,并引发氧化应激和生理应激反应,这在生物标志物浓度变化中得到体现。