Multidimensional Predictive Modeling to Understand Mechanisms of Exercise Response Heterogeneity in Older Adults
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 250
- 试验地点
- 2
- 主要终点
- Functional muscle quality (fMQ)
研究概览
简要总结
Aging-related functional declines are thought to be caused by hallmark biological processes that ultimately manifest in physical, mental, and metabolic impairments that compromise healthspan and quality of life. Exercise is a multipotent treatment with promise to mitigate most aging hallmarks, but there is substantial variability in exercisƒe responsiveness. Combining endurance and resistance training in alignment with public health guidelines will be used to better understand variable exercise responsiveness in older adults with the ultimate goal of improving each older adult's capacity to attain the many health benefits of exercise.
详细描述
Aging-related functional declines are thought to be caused by hallmark biological processes1 that ultimately manifest in physical, mental, and metabolic impairments - compromising healthspan and quality of life (QoL). Exercise is a multipotent treatment with promise to mitigate most aging hallmarks, but there is substantial variability in individual exercise responsiveness. This inter-individual response heterogeneity (IRH) was first identified and extensively interrogated by Bouchard and colleagues in the context of endurance training (ET). Subsequently, the investigators have demonstrated resistance training (RT) IRH and have studied potential IRH mechanisms. The investigators then led multiple trials in older adults examining dose titration, adjuvant nutrition or medication in attempts to lower poor response rates. Many knowledge gaps remain as summarized in the National Institutes of Aging (NIA) workshop on IRH seeding this Requests for Applications (RFA). The investigators have assembled an interdisciplinary team to address the RFA's central goal, "to better understand factors underlying response variability to exercise training in older adults." Although Health and Human Services (HHS) guidelines specify combined ET and RT to maximize health benefits in aging adults, large-scale exercise trials studying IRH (i.e., HERITAGE, MoTrPAC) have restricted participants to a single exercise mode. For this project, the investigators propose the innovative, but logical, strategy to use combined ET and RT. Low cardiorespiratory fitness (CRF, VO2max) and low functional muscle quality (fMQ; strength/muscle mass) are multi-system manifestations of the deterioration of the cellular hallmarks of aging. Importantly, both CRF and fMQ are modifiable with ET and RT. Thus, the investigators design premise is that combined ET+RT is an excellent strategy for elucidating factors underlying IRH, as it forges a path toward understanding and mitigating IRH in aging with direct translatability to best-evidence public health recommendations.
It is yet to be determined how the hallmarks of aging interact to influence exercise responsiveness. For example, muscle mitochondrial energetics and proteostasis are inextricably linked, and poor responder status may be caused by lack of energetic resources to maintain proteostasis throughout an exercise program. Similarly, aging disrupts circadian clocks, leading to inflammation and disrupted cell signaling, which may also contribute to IRH.
While sources of IRH are a constellation of modifiable and non-modifiable factors, the investigators will test the hypothesis that factors central to aging itself - aging hallmarks such as proteostasis, mitochondrial energetics, and inflammation, as well as systemic and muscle-specific circadian clock function and output - are chief contributors to the multidimensional circuitry that determines whether an individual achieves the minimum clinically important difference (MCID) in CRF and/or fMQ with exercise training. The investigators will also test the hypothesis that altered exercise dosing coupled with lifestyle recommendations will promote attainment of MCIDs among older adults who do not initially respond. With CRF and fMQ as primary clinical outcomes, the investigators will use a 2-phase Sequential Multiple Assignment Randomized Trial (SMART) of combined ET+RT with clinical phenotyping and blood/muscle molecular and cellular analyses.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Factorial
- 主要目的
- Treatment
- 盲法
- Double (Investigator, Outcomes Assessor)
盲法说明
Biospecimen investigators will be blinded from gender and age.
入排标准
- 年龄范围
- 60 Years 至 —(Adult, Older Adult)
- 性别
- All
- 接受健康志愿者
- 是
入选标准
- •Male or female aged 60 or above
- •Free of chronic disease
- •No structured exercise program (2 or more bouts/wk) within previous 12 months
- •Cognitively capable of providing informed consent
排除标准
- •Neuromuscular or musculoskeletal disorder that would limit ability to perform the exercise and/or testing bouts
- •Cardiopulmonary disorders or reduced breathing capacity
- •Metabolic diseases including markers of liver disease (ALT > 52 U/l) and type 2 diabetes (HbA1C = or > 6.5, fasting blood glucose = or > 126 mg/dl)
- •Any other disease or disorder that would influence exercise response (e.g., chronic kidney disease, dementia, current cancer diagnosis or within 2 yr remission, cerebrovascular disease)
- •Any current infectious disease
- •Life expectancy < 1 year
- •Insulin sensitizing/blood glucose lowering agents such as metformin or metabolic weight loss agents (e.g. GLP-1 agonists)
- •High dose statin (dose equivalent of 40 mg/d or higher simvastatin)
- •Lidocaine allergy
- •Regular tobacco use and/or vaping
- •Excessive alcohol consumption (3 drinks/d or 7 drinks/wk for females; 4 drinks/d or 14 drinks/wk for males)
- •BMI 35.0 kg/m2 or higher
- •Unable to commit to ~6 months required to complete the study
研究组 & 干预措施
Phase I (12 weeks)
In Interrogation, all participants will exercise train using an exercise prescription that is in accordance with current public health recommendations. At the end of Phase I participants will be classified into one of four categories: (1) CRF-/fMQ-, 2) CRF-/fMQ+, 3) CRF+/fMQ- and 4) CRF+/fMQ+).
干预措施: Combined endurance and resistance training (Other)
Phase II (10 weeks)
Based on the Phase I categories of responsiveness, exercise training will be boosted in the three groups that are non-responsive in one or both outcomes. CRF-/fMQ+ will receive boosted ET, CRF+/fMQ- will receive boosted RT, and CRF-/fMQ- will receive boosting in both. All three of these classifications will also receive education on wearable device data and other free-living recommendations. Participants classified as CRF+/fMQ+ at the end of Phase I will be randomized to either continue the supervised exercise training or to free-living.
干预措施: Combined endurance and resistance training (Other)
结局指标
主要结局
Functional muscle quality (fMQ)
时间窗: 23 weeks
A primary outcome of this investigation is functional muscle quality (fMQ). This is a ratio of knee extension strength to thigh leanness. Knee extension strength is the maximum amount of weight you can successfully lift one time. Thigh lean mass is measured with the dual energy x-ray absorptiometry (DEXA). This is a common tool used to measure bone density, but it is very efficient at determining fat and lean masses partitioned in the body.
Cardiorespiratory fitness (CRF)
时间窗: 23 weeks
A primary outcome of this investigation is cardiorespiratory fitness (CRF). The CRF is the amount of oxygen (ml/kg) that is used during exercise and how efficient you are using that oxygen. The exercise used to measure oxygen uptake is a stationary bicycle with increasing intensity until you are able to maintain pace. Your expired air is collected with a mask or mouthpiece and analyzed with an oxygen and carbon dioxide sensor.
次要结局
- Metabolic health(23 weeks)
- Cognitive performance(23 weeks)
- Body composition(23 weeks)
- Balance(23 weeks)
