Department of Health Science, Kansai Medical University, Hirakata, Osaka, Japan.
Health Science Center, Kansai Medical University Hospital, Hirakata, Osaka, Japan.
PLoS One. 2021 Jan 19;16(1):e0245678. doi: 10.1371/journal.pone.0245678. eCollection 2021.
Adiponectin has been reported to be associated with lower skeletal muscle mass and skeletal strength and may be involved in skeletal muscle regulation along with myostatin. This study aims to evaluate the association between serum adiponectin and myostatin levels and identify independent factors using body composition and metabolic parameters in patients with obesity.
Overall, 148 patients (age, 45.9 ± 14.3 years, body mass index, 37.2 ± 8.0 kg/m2) who initially visited the outpatient clinic of obesity between November 2013 and November 2019 were included. Body composition was measured using InBody 720 and dual energy X-ray absorptiometry. In addition, muscle strength, vascular function, and metabolic parameters were measured. Serum levels of adiponectin, leptin, myostatin, and irisin were measured from blood samples.
The serum adiponectin level was 2.9 μg/mL (1.7-4.1 μg/mL), and the serum myostatin level was 2398.4 pg/mL (1,777.1-2952.5 pg/mL). The stepwise regression analysis revealed less leg strength, homeostasis model assessment of insulin resistance, and C-reactive protein as an independent predictor of serum adiponectin levels based on the significance of the univariate analysis (R2 = 0.190, P < 0.001). A high appendicular lean mass/body weight, reactive hyperemia index, and irisin were independent factors for serum myostatin levels (R2 = 0.260, P < 0.001).
The serum adiponectin level was associated with less muscle strength. Although serum myostatin was associated with a high appendicular lean mass, it is possible that myostatin was regulated by the percentage of body weight from appendicular lean mass.
已有研究报道脂联素与较低的骨骼肌量和骨骼肌强度相关,并且可能与肌肉生长抑制素一起参与骨骼肌调节。本研究旨在评估肥胖患者血清脂联素和肌肉生长抑制素水平与体成分和代谢参数之间的相关性,并确定独立因素。
共纳入 2013 年 11 月至 2019 年 11 月期间初诊于肥胖门诊的 148 例患者(年龄 45.9±14.3 岁,体重指数 37.2±8.0kg/m2)。采用 InBody 720 和双能 X 线吸收仪测量体成分,同时测量肌肉力量、血管功能和代谢参数。从血液样本中测量血清脂联素、瘦素、肌肉生长抑制素和鸢尾素水平。
血清脂联素水平为 2.9μg/mL(1.7-4.1μg/mL),血清肌肉生长抑制素水平为 2398.4pg/mL(1777.1-2952.5pg/mL)。逐步回归分析显示,根据单因素分析的显著性,较少的腿部力量、稳态模型评估的胰岛素抵抗和 C 反应蛋白是血清脂联素水平的独立预测因子(R2=0.190,P<0.001)。四肢瘦体重/体重高、反应性充血指数和鸢尾素是血清肌肉生长抑制素水平的独立因素(R2=0.260,P<0.001)。
血清脂联素水平与肌肉力量减弱相关。虽然血清肌肉生长抑制素与四肢瘦体重高相关,但肌肉生长抑制素可能受四肢瘦体重占体重的百分比调节。