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运动适应的多维生物回路:将体内和体外表型组学与微小RNA图谱整合

Multidimensional biocircuitry of exercise adaptation: integrating in vivo and ex vivo phenomics with miRNA mapping.

作者信息

McAdam Jeremy S, Craig Michael P, Graham Zachary A, Peoples Brandon, Tuggle S Craig, Seay Regina S, Lavin Kaleen M, Gargus Amber B, O'Bryan Samia M, Yang Sufen, Drummer Devin J, Kelley Christian J, Peri Kalyani, Bell Margaret B, Aban Inmaculada, Cutter Gary R, Mahyari Arash, Wen Yuan, Zhang Jin, Hira Akshay, Broderick Timothy J, Kadakia Madhavi P, Bamman Marcas M

机构信息

Healthspan, Resilience, and Performance Research, Florida Institute for Human and Machine Cognition, Pensacola, Florida, United States.

UAB Center for Exercise Medicine, University of Alabama at Birmingham, Birmingham, Alabama, United States.

出版信息

Physiol Genomics. 2025 Sep 1;57(9):526-550. doi: 10.1152/physiolgenomics.00068.2025. Epub 2025 Jul 14.

Abstract

In a randomized, dose-response trial, we used molecular and phenomic profiling to compare responses with traditional moderate-intensity endurance and resistance training (TRAD) versus high-intensity tactical training (HITT) that encompassed explosive whole-body interval training and high-intensity resistance training. Ninety-four participants (18-27 yr) completed 12 wk of TRAD or HITT followed by 4 wk of detraining. Although similar performance and body composition improvements were observed in response to HITT and TRAD, some dose-dependent differences were observed for: ) ex vivo muscle tissue changes in myofiber size, capillarization, satellite cell frequency, and mitochondrial function and ) differential gene expression (DGE) of muscle and serum exosomal miRNAs (miRs). However, these dose-dependent ex vivo muscle adaptations were overshadowed by wide-ranging interindividual response heterogeneity (IRH). We therefore explored response heterogeneity by first establishing minimum clinically important difference (MCID) scores to classify each participant based on MCIDs for functional muscle quality (fMQ) and cardiorespiratory fitness (CRF) and then modeling all data based on MCID classification. Using higher-order singular value decomposition (HOSVD), we established multidimensional biocircuitry linked to interindividual response heterogeneity that identified the most influential features across lifestyle, body composition, performance, ex vivo muscle tissue, and miRNA mapping domains. Via cross-comparison of MCID-linked miRs identified via DGE and HOSVD, nine miRs emerged as robust features of training adaptability, providing new insights into the integrated biocircuitry driving IRH. We examined in vivo and ex vivo adaptations to traditional moderate-intensity endurance and resistance training (TRAD) versus high-intensity tactical training (HITT; explosive whole-body interval training and high-intensity resistance training). TRAD and HITT improved physiological performance and body composition, and induced ex vivo muscle adaptations, with remarkable interindividual response heterogeneity (IRH) in improvements. We leveraged multidimensional modeling to identify interindividual response heterogeneity biocircuitry that integrates deep phenotyping and miR transcriptomics (serum exosomes and skeletal muscle).

摘要

在一项随机剂量反应试验中,我们使用分子和表型分析,比较了传统中等强度耐力和阻力训练(TRAD)与高强度战术训练(HITT,包括爆发性全身间歇训练和高强度阻力训练)的反应。94名参与者(18 - 27岁)完成了12周的TRAD或HITT训练,随后进行4周的停训。尽管在对HITT和TRAD的反应中观察到了类似的运动表现和身体成分改善,但在以下方面观察到了一些剂量依赖性差异:1)离体肌肉组织中肌纤维大小、毛细血管化、卫星细胞频率和线粒体功能的变化,以及2)肌肉和血清外泌体微小RNA(miRs)的差异基因表达(DGE)。然而,这些剂量依赖性的离体肌肉适应性被广泛的个体间反应异质性(IRH)所掩盖。因此,我们通过首先建立最小临床重要差异(MCID)评分,根据功能性肌肉质量(fMQ)和心肺适能(CRF)的MCID对每个参与者进行分类,然后基于MCID分类对所有数据进行建模,来探索反应异质性。使用高阶奇异值分解(HOSVD),我们建立了与个体间反应异质性相关的多维生物电路,确定了生活方式、身体成分、运动表现、离体肌肉组织和miR图谱域中最具影响力的特征。通过对通过DGE和HOSVD鉴定的与MCID相关的miRs进行交叉比较,9个miRs成为训练适应性的稳健特征,为驱动IRH的整合生物电路提供了新的见解。我们研究了对传统中等强度耐力和阻力训练(TRAD)与高强度战术训练(HITT;爆发性全身间歇训练和高强度阻力训练)的体内和离体适应性。TRAD和HITT改善了生理性能和身体成分,并诱导了离体肌肉适应性,在改善方面存在显著的个体间反应异质性(IRH)。我们利用多维建模来识别整合深度表型和miR转录组学(血清外泌体和骨骼肌)的个体间反应异质性生物电路。

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