脂质体
代谢组
蛋白质组
转录组
脂类学
计算生物学
运动生理学
生物信息学
外周血单个核细胞
生物
代谢组学
医学
内科学
体外
基因表达
基因
生物化学
作者
Kévin Contrepois,Si Wu,Kegan Moneghetti,Daniel Hornburg,Sara Ahadi,Ming‐Shian Tsai,Ahmed A. Metwally,Eric Wei,Brittany Lee‐McMullen,Jeniffer Quijada,Songjie Chen,Jeffrey W. Christle,Mathew Ellenberger,Brunilda Balliu,Shalina Taylor,Matthew G. Durrant,David A. Knowles,Hany Choudhry,Melanie Ashland,Amir Bahmani
标识
DOI:10.1101/2020.01.13.905349
摘要
Abstract Exercise testing is routinely used in clinical practice to assess fitness - a strong predictor of survival - as well as causes of exercise limitations. While these studies often focus on cardiopulmonary response and selected molecular pathways, the dynamic system-wide molecular response to exercise has not been fully characterized. We performed a longitudinal multi-omic profiling of plasma and peripheral blood mononuclear cells including transcriptome, immunome, proteome, metabolome and lipidome in 36 well-characterized volunteers before and after a controlled bout of acute exercise (2, 15, 30 min and 1 hour in recovery). Integrative analysis revealed an orchestrated choreography of biological processes across key tissues. Most of these processes were dampened in insulin resistant participants. Finally, we discovered biological pathways involved in exercise capacity and developed prediction models revealing potential resting blood-based biomarkers of fitness.
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