Department of Otolaryngology-Head and Neck Surgery, Deep Underground Space Medical Center, West China Hospital, Sichuan University, Guoxuexiang, Chengdu, China.
Jinping Deep Underground Frontier Science and Dark Matter Key Laboratory of Sichuan Province, Liangshan, China.
Front Public Health. 2024 May 15;12:1384544. doi: 10.3389/fpubh.2024.1384544. eCollection 2024.
Extreme heat events caused by occupational exposure and heat waves are becoming more common. However, the molecular changes underlying the response to heat exposure in humans remain to be elucidated.
This study used longitudinal multi-omics profiling to assess the impact of acute heat exposure (50°C for 30 min) in 24 subjects from a mine rescue team. Intravenous blood samples were collected before acute heat exposure (baseline) and at 5 min, 30 min, 1 h, and 24 h after acute heat exposure (recovery). In-depth multi-omics profiling was performed on each sample, including plasma proteomics (untargeted) and metabolomics (untargeted).
After data curation and annotation, the final dataset contained 2,473 analytes, including 478 proteins and 1995 metabolites. Time-series analysis unveiled an orchestrated molecular choreography of changes involving the immune response, coagulation, acid-base balance, oxidative stress, cytoskeleton, and energy metabolism. Further analysis through protein-protein interactions and network analysis revealed potential regulators of acute heat exposure. Moreover, novel blood-based analytes that predicted change in cardiopulmonary function after acute heat exposure were identified.
This study provided a comprehensive investigation of the dynamic molecular changes that underlie the complex physiological processes that occur in human males who undergo heat exposure. Our findings will help health impact assessment of extreme high temperature and inspire future mechanistic and clinical studies.
职业性暴露和热浪引起的极端高温事件越来越常见。然而,人类对热暴露反应的分子变化仍有待阐明。
本研究采用纵向多组学分析,评估 24 名矿山救援人员在急性热暴露(50°C 30 分钟)下的影响。在急性热暴露前(基线)和暴露后 5 分钟、30 分钟、1 小时和 24 小时采集静脉血样本。对每个样本进行深入的多组学分析,包括血浆蛋白质组学(非靶向)和代谢组学(非靶向)。
在数据整理和注释后,最终数据集包含 2473 种分析物,包括 478 种蛋白质和 1995 种代谢物。时间序列分析揭示了涉及免疫反应、凝血、酸碱平衡、氧化应激、细胞骨架和能量代谢的协调分子变化。通过蛋白质-蛋白质相互作用和网络分析的进一步分析揭示了急性热暴露的潜在调节剂。此外,还确定了预测急性热暴露后心肺功能变化的新型血液分析物。
本研究全面调查了人类男性在热暴露下发生的复杂生理过程的基础上的动态分子变化。我们的研究结果将有助于对极端高温的健康影响评估,并为未来的机制和临床研究提供启示。