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青年男性作业疲劳血清脂质和免疫因子组学分析研究OA

Serum lipids and immune factor omics of operational fatigue in young males

中文摘要英文摘要

目的 通过整合血清脂质组学和免疫因子组学多组学分析揭示青年男性作业疲劳的分子机制,并筛选潜在生物标志物.方法 青年男性60例,在其训练期(TP)和恢复期(RP)分别开展疲劳及睡眠主观问卷测评,血乳酸(BLA)和肌酸激酶(CK)检测,以评价疲劳程度;分析血清脂质组学和免疫因子组学测试结果,筛选潜在生物标志物并利用ELISA法靶向验证.结果 通过疲劳量表评估发现,TP组疲劳评分显著高于RP组(P<0.05),睡眠质量低于RP 组,且伴随 CK[TP:(498.90±215.50)U/L vs.RP:(181.74±65.14)U/L]和 BLA[TP:(5.83±1.23)mmol/L vs.RP:(3.07±0.64)mmol/L]异常升高.脂质组学分析结果显示,磷脂酰胆碱(PC)亚类脂质分子PC(18∶1-20∶3)+Na(AUC=0.85)与总体疲劳评分(r=-0.64,P<0.001)和BLA(r=0.57,P<0.001)呈中等强度相关;免疫因子组学结果发现,血小板源性生长因子BB(PDGF-BB)(AUC=0.78)与BLA(r=-0.40,P<0.01)和CK(r=-0.46,P<0.001)呈负相关,ELISA验证结果均与组学结果表达趋势一致.结论 建立作业疲劳的"脂质-免疫"双维度评价体系,发现脂质亚类PC,免疫因子PDGF-BB具备作为生物标志物潜力,可分别从能量代谢变化和反映机体微小组织损伤修复角度反映疲劳程度,为疲劳监测和靶向干预提供了潜在的新型生物标志物,而PDGF-BB-PC代谢轴调节角度为疲劳发生发展机制的研究提供了新思路.

Objective To study the molecular mechanisms underlying operational fatigue in young males using serum lipidomics and immune factor omics.Methods Sixty young males were involved in this study,who were asked to fill in the questionnaire about their fatigue and sleep during training period(TP)and recovery period(RP).The levels of blood lactic acid(BLA)and creatine kinase(CK)were measured to determine their levels of fatigue.Serum lipidomics and immune factor profiles were also analyzed to identify potential biomarkers that were detected using ELISA.Results Fatigue scores were significantly higher during TP than during RP(P<0.05)while sleep quality was poorer.CK[TP:(498.90±215.50)U/L vs.RP:(181.74±65.14)U/L]and BLA levels[TP:(5.83±1.23)mmol/L vs.RP:(3.07±0.64)mmol/L]were higher during TP.Lipidomics analysis suggested that the phosphatidylcholine(PC)subclass lipid molecule PC(18∶1-20∶3)+Na(AUC=0.85)was moderately correlated with fatigue scores(r=-0.64,P<0.001)and with BLA levels(r=0.57,P<0.001).Immune factor profiling indicated that platelet-derived growth factor BB(PDGF-BB)(AUC=0.78)was negatively correlated with BLA levels(r=-0.40,P<0.01)and CK(r=-0.46,P<0.001).The trends observed in the omics analyses were corroborated by ELISA validation results.Conclusion These findings suggest a"lipid-immune"two-dimensional evaluation system for operational fatigue.The lipid subclass PC and PDGF-BB may serve as candidate biomarkers for monitoring operational fatigue by reflecting changes in energy metabolism and responses related to minor tissue injury and repair.Furthermore,the PDGF-BB-PC metabolic axis may provide new insights into the mechanisms underlying the occurrence of operational fatigue.

张庆晗;范利君;宋明箫;郭子逸;王静;陈学伟;陆俊宇

军事科学院军事医学研究院,天津 300050||北部战区疾病预防控制中心,沈阳 110034军事科学院军事医学研究院,天津 300050军事科学院军事医学研究院,天津 300050军事科学院军事医学研究院,天津 300050||武汉体育学院,武汉 430079军事科学院军事医学研究院,天津 300050军事科学院军事医学研究院,天津 300050军事科学院军事医学研究院,天津 300050

医药卫生

作业疲劳脂质组学免疫因子组学生物标志物

operational fatiguelipidomicsimmune factor omicsbiomarkers

《军事医学》 2026 (6)

425-433,9

10.7644/j.issn.1674-9960.2026-00010

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