运动可改善血液透析患者的呼吸功能、体液和一氧化氮。

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Rodrigo Vanerson Passos Neves, Hugo Luca Corrêa, Andrea Lucena Reis, Rosangela Vieira Andrade, Thais Branquinho Araújo, Rafael Lavarini Santos, Fernanda Félix Santos Oliveira, Guilherme Eduardo Barbosa Moraes Araújo, André Victor Gulyas Marra, Thaís Amaral Baracho, Taynah Oliveira Martins, Jessica Mycaelle da Silva Barbosa, Mariana Neiva Garcia, Nicole Messenberg Guimarães Miller, Lysleine Alves Deus, Thiago Dos Santos Rosa
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引用次数: 0

摘要

新的证据表明,阻力训练(RT)可以减轻血液透析(HD)患者呼吸肌的无力。然而,这些有益作用的潜在机制仍不清楚。本研究的目的是评估周期性 RT 对血液透析患者呼吸肌力量的影响及其与手握力(HGS)、去脂质量(FFM)、一氧化氮(NO)和透析间期体重增加(IWG)的关系。33 名患者被随机分配到两组:对照组(CTL;人数=18)和 RT 组(人数=15)。RT 组不进行任何额外的呼吸道专项运动训练。在干预期前后测量了最大吸气(MIP)和呼气(MEP)压力、呼气峰值流量(PEF)、HGS、FFM、NO 和 IWG。RT 组的参与者参加了为期 24 周的 RT 计划,每周三次。RT 显著改善了 MIP、MEP 和 PEF,并提高了 HGS、FFM、NO 和 IWG(p
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exercise Improves Respiratory Function, Body Fluid and Nitric Oxide in Hemodialysis Patients.

Emerging evidence suggests that resistance training (RT) can mitigate respiratory muscle weakness in hemodialysis (HD) patients. However, the underlying mechanisms responsible for these beneficial effects remain unclear. The purpose of this study was to assess the impact of periodized RT on respiratory muscle strength and its relationship with handgrip strength (HGS), fat-free mass (FFM), nitric oxide (NO), and interdialytic weight gain (IWG) in HD patients. Thirty-three patients were randomly assigned to two groups: control (CTL; n=18) and RT (n=15). The RT group did not perform any additional exercise training specific to the respiratory tract. Maximal inspiratory (MIP) and expiratory (MEP) pressures, peak expiratory flow (PEF), HGS, FFM, NO, and IWG were measured before and after the intervention period. Participants in the RT group engaged in a 24-week RT program, three times per week. RT resulted in significant improvements in MIP, MEP, PEF, as well as enhancements in HGS, FFM, NO, and IWG (p<0.05). Notably, inverse correlations were observed between MIP (r=-0.37, p=0.03) and PEF (r=-0.4, p=0.02) with IWG. Thus, the amelioration of HGS and FFM coincided with a reduction in respiratory muscle weakness among HD patients. Decreased IWG and increased circulating NO are plausible mechanisms contributing to these improvements.

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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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