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被动和主动腿部运动中断健康成年人轻度高碳酸血症时坐姿对心血管功能的影响。

Effects of passive and active leg movements to interrupt sitting in mild hypercapnia on cardiovascular function in healthy adults.

机构信息

School of Health and Kinesiology, University of Nebraska Omaha, Omaha, Nebraska.

Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, Nebraska.

出版信息

J Appl Physiol (1985). 2022 Mar 1;132(3):874-887. doi: 10.1152/japplphysiol.00799.2021. Epub 2022 Feb 17.

Abstract

Prolonged sitting in a mild hypercapnic environment impairs peripheral vascular function. The effects of sitting interruptions using passive or active skeletal muscle contractions are still unclear. Therefore, we sought to examine the vascular effects of brief periods (2 min every half hour) of passive and active lower limb movement to interrupt prolonged sitting with mild hypercapnia in adults. Fourteen healthy adults (24 ± 2 yr) participated in three experimental visits sitting for 2.5 h in a mild hypercapnic environment (CO = 1,500 ppm): control (CON, no limb movement), passive lower limb movement (PASS), and active lower limb movement (ACT) during sitting. At all visits, brachial and popliteal artery flow-mediated dilation (FMD), microvascular function, plasmatic levels of nitrate/nitrite and endothelin-1, and heart rate variability were assessed before and after sitting. Brachial and popliteal artery FMDs were reduced in CON and PASS ( < 0.05) but were preserved ( > 0.05) in ACT. Microvascular function was blunted in CON ( < 0.05) but was preserved in PASS and ACT ( > 0.05). In addition, total plasma nitrate/nitrite was preserved in ACT ( > 0.05) but was reduced in CON and PASS ( < 0.05), and endothelin-1 levels were decreased in ACT ( < 0.05). Both passive and active movement induced a greater ratio between the low-frequency and high-frequency bands for heart rate variability ( < 0.05). For the first time, to our knowledge, we found that brief periods of passive leg movement can preserve microvascular function, but that an intervention that elicits larger increases in shear rate, such as low-intensity exercise, is required to fully protect both macrovascular and microvascular function and circulating vasoactive substance balance. Passive leg movement could not preserve macrovascular endothelial function, whereas active leg movement could protect endothelial function. Attenuated microvascular function can be salvaged by passive movement and active movement. Preservation of macrovascular hemodynamics and plasma total nitrate/nitrite and endothelin-1 during prolonged sitting requires active movement. These findings dissociate the impacts induced by mechanical stress (passive movement) from the change in metabolism (active movement) on the vasculature during prolonged sitting in a mild hypercapnic environment.

摘要

在轻度高碳酸环境中长时间坐着会损害外周血管功能。使用被动或主动骨骼肌收缩来打断坐姿的效果仍不清楚。因此,我们试图研究短暂时间(每半小时 2 分钟)的被动和主动下肢运动对成年人在轻度高碳酸环境中长时间坐着的血管影响。14 名健康成年人(24±2 岁)参加了三个实验访问,在轻度高碳酸环境(CO=1500ppm)中坐着 2.5 小时:对照(CON,无肢体运动)、被动下肢运动(PASS)和主动下肢运动(ACT)。在所有访问中,在坐姿前后评估了肱动脉和腘动脉血流介导的扩张(FMD)、微血管功能、硝酸盐/亚硝酸盐和内皮素-1 的血浆水平以及心率变异性。CON 和 PASS 中肱动脉和腘动脉 FMD 降低(<0.05),但 ACT 中保留(>0.05)。CON 中微血管功能受损(<0.05),但 PASS 和 ACT 中保留(>0.05)。此外,ACT 中总血浆硝酸盐/亚硝酸盐保留(>0.05),但 CON 和 PASS 中降低(<0.05),ACT 中内皮素-1 水平降低(<0.05)。被动和主动运动均引起心率变异性低频和高频带之间的比值增加更大(<0.05)。据我们所知,这是首次发现短暂的被动腿部运动可以保留微血管功能,但需要更大幅度增加剪切率的干预,例如低强度运动,才能完全保护大血管和微血管功能以及循环血管活性物质平衡。被动腿部运动不能保留大血管内皮功能,而主动腿部运动可以保护内皮功能。被动运动和主动运动可以挽救微血管功能受损。在长时间坐着的轻度高碳酸环境中,需要主动运动来保持大血管血液动力学和血浆总硝酸盐/亚硝酸盐和内皮素-1。这些发现将机械应激(被动运动)和代谢变化(主动运动)对长时间坐着时血管的影响区分开来。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b13/8934680/e5d90b283870/jappl-00799-2021r01.jpg

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