Loading Enhances Glucose Uptake in Muscles, Bones, and Bone Marrow of Lower Extremities in Humans.

IF 5 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Journal of Clinical Endocrinology & Metabolism Pub Date : 2024-11-18 DOI:10.1210/clinem/dgae344
Jakob Bellman, Tanja Sjöros, Daniel Hägg, Erika Atencio Herre, Janina Hieta, Olli Eskola, Kirsi Laitinen, Pirjo Nuutila, John-Olov Jansson, Per-Anders Jansson, Kari Kalliokoski, Anne Roivainen, Claes Ohlsson
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Abstract

Context: Increased standing time has been associated with improved health, but the underlying mechanism is unclear.

Objectives: We herein investigate if increased weight loading increases energy demand and thereby glucose uptake (GU) locally in bone and/or muscle in the lower extremities.

Methods: In this single-center clinical trial with a randomized crossover design (ClinicalTrials.gov ID, NCT05443620), we enrolled 10 men with body mass index between 30 and 35 kg/m2. Participants were treated with both high load (standing with weight vest weighing 11% of body weight) and no load (sitting) on the lower extremities. GU was measured using whole-body quantitative positron emission tomography/computed tomography imaging. The primary endpoint was the change in GU ratio between loaded bones (ie, femur and tibia) and nonloaded bones (ie, humerus).

Results: High load increased the GU ratio between lower and upper extremities in cortical diaphyseal bone (eg, femur/humerus ratio increased by 19%, P = .029), muscles (eg, m. quadriceps femoris/m. triceps brachii ratio increased by 28%, P = .014), and certain bone marrow regions (femur/humerus diaphyseal bone marrow region ratio increased by 17%, P = .041). Unexpectedly, we observed the highest GU in the bone marrow region of vertebral bodies, but its GU was not affected by high load.

Conclusion: Increased weight-bearing loading enhances GU in muscles, cortical bone, and bone marrow of the exposed lower extremities. This could be interpreted as increased local energy demand in bone and muscle caused by increased loading. The physiological importance of the increased local GU by static loading remains to be determined.

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负载可提高人体下肢肌肉、骨骼和骨髓对葡萄糖的吸收。
背景:增加站立时间与改善健康状况有关,但其潜在机制尚不清楚:我们在此研究增加体重负荷是否会增加能量需求,从而增加下肢骨和/或肌肉局部的葡萄糖摄取量(GU):在这项采用随机交叉设计的单中心临床试验(ClinicalTrials.gov ID,NCT05443620)中,我们招募了 10 名体重指数(BMI)在 30 至 35 kg/m2 之间的男性。受试者的下肢分别接受了高负荷(穿着重量为体重 11% 的负重背心站立)和无负荷(坐着)治疗。使用全身定量正电子发射断层扫描/计算机断层扫描(PET/CT)成像对 GU 进行测量。主要终点是负载骨(即股骨和胫骨)与非负载骨(即肱骨)之间的GU比率变化:结果:高负荷增加了下肢和上肢皮质骺骨(如股骨/肱骨比值增加了 19%,p = 0.029)、肌肉(如股四头肌/肱三头肌比值增加了 28%,p = 0.014)和某些骨髓区域(股骨/肱骨骺骨髓区域比值增加了 17%,p = 0.041)的 GU 比值。意想不到的是,我们在椎体骨髓区观察到了最高的GU,但其GU不受高负荷的影响:结论:增加负重负荷会增强裸露下肢肌肉、皮质骨和骨髓的 GU。这可以解释为负荷增加导致骨骼和肌肉的局部能量需求增加。静态负荷增加的局部GU的生理重要性仍有待确定。
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来源期刊
Journal of Clinical Endocrinology & Metabolism
Journal of Clinical Endocrinology & Metabolism 医学-内分泌学与代谢
CiteScore
11.40
自引率
5.20%
发文量
673
审稿时长
1 months
期刊介绍: The Journal of Clinical Endocrinology & Metabolism is the world"s leading peer-reviewed journal for endocrine clinical research and cutting edge clinical practice reviews. Each issue provides the latest in-depth coverage of new developments enhancing our understanding, diagnosis and treatment of endocrine and metabolic disorders. Regular features of special interest to endocrine consultants include clinical trials, clinical reviews, clinical practice guidelines, case seminars, and controversies in clinical endocrinology, as well as original reports of the most important advances in patient-oriented endocrine and metabolic research. According to the latest Thomson Reuters Journal Citation Report, JCE&M articles were cited 64,185 times in 2008.
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