Hildebrandt Wulf, Schwarzbach Hans, Pardun Anita, Hannemann Lena, Bogs Björn, König Alexander M, Mahnken Andreas H, Hildebrandt Olaf, Koehler Ulrich, Kinscherf Ralf
Department of Medical Cell Biology, Institute of Anatomy and Cell Biology, University of Marburg, Marburg, Germany.
Department of Diagnostic and Interventional Radiology, University Hospital of Giessen and Marburg (UKGM) University, Baldingerstraße, Marburg, Germany.
PLoS One. 2017 Mar 8;12(3):e0172771. doi: 10.1371/journal.pone.0172771. eCollection 2017.
Aging involves reductions in exercise total limb blood flow and exercise capacity. We hypothesized that this may involve early age-related impairments of skeletal muscle microvascular responsiveness as previously reported for insulin but not for exercise stimuli in humans.
Using an isometric exercise model, we studied the effect of age on contrast-enhanced ultrasound (CEUS) parameters, i.e. microvascular blood volume (MBV), flow velocity (MFV) and blood flow (MBF) calculated from replenishment of Sonovue contrast-agent microbubbles after their destruction. CEUS was applied to the vastus lateralis (VLat) and intermedius (VInt) muscle in 15 middle-aged (MA, 43.6±1.5 years) and 11 young (YG, 24.1±0.6 years) healthy males before, during, and after 2 min of isometric knee extension at 15% of peak torque (PT). In addition, total leg blood flow as recorded by femoral artery Doppler-flow. Moreover, fiber-type-specific and overall capillarisation as well as fiber composition were additionally assessed in Vlat biopsies obtained from CEUS site. MA and YG had similar quadriceps muscle MRT-volume or PT and maximal oxygen uptake as well as a normal cardiovascular risk factors and intima-media-thickness.
During isometric exercise MA compared to YG reached significantly lower levels in MFV (0.123±0.016 vs. 0.208±0.036 a.u.) and MBF (0.007±0.001 vs. 0.012±0.002 a.u.). In the VInt the (post-occlusive hyperemia) post-exercise peaks in MBV and MBF were significantly lower in MA vs. YG. Capillary density, capillary fiber contacts and femoral artery Doppler were similar between MA and YG.
In the absence of significant age-related reductions in capillarisation, total leg blood flow or muscle mass, healthy middle-aged males reveal impaired skeletal muscle microcirculatory responses to isometric exercise. Whether this limits isometric muscle performance remains to be assessed.
衰老伴随着运动时肢体总血流量和运动能力的下降。我们推测,这可能与骨骼肌微血管反应性的早期年龄相关损伤有关,此前有报道称胰岛素存在这种情况,但人类运动刺激方面未见报道。
使用等长运动模型,我们研究了年龄对超声造影(CEUS)参数的影响,即通过声诺维造影剂微泡破坏后再充盈计算得出的微血管血容量(MBV)、流速(MFV)和血流量(MBF)。在15名中年(MA,43.6±1.5岁)和11名年轻(YG,24.1±0.6岁)健康男性进行2分钟等长伸膝运动(运动强度为峰值扭矩(PT)的15%)之前、期间和之后,将CEUS应用于股外侧肌(VLat)和股中间肌(VInt)。此外,通过股动脉多普勒血流记录全腿血流量。另外,在从CEUS检查部位获取的Vlat活检组织中评估纤维类型特异性和总体毛细血管化以及纤维组成。MA组和YG组的股四头肌MRT体积、PT、最大摄氧量相似,心血管危险因素和内膜中层厚度均正常。
在等长运动期间,与YG组相比,MA组的MFV(0.123±0.016 vs. 0.208±0.036任意单位)和MBF(0.007±0.001 vs. 0.012±0.002任意单位)显著降低。在VInt中,MA组运动后(闭塞后充血)的MBV和MBF峰值显著低于YG组。MA组和YG组之间的毛细血管密度、毛细血管与纤维的接触以及股动脉多普勒情况相似。
在毛细血管化、全腿血流量或肌肉质量无明显年龄相关下降的情况下,健康中年男性骨骼肌对等长运动的微循环反应受损。这是否会限制等长肌肉性能仍有待评估。