前交叉韧带重建 2 年后,对机械刺激做出反应的促炎细胞因子升高与膝关节负荷减轻有关

IF 1.4 3区 医学 Q4 ENGINEERING, BIOMEDICAL
Arielle G. Fischer , Matthew R. Titchenal , Eleonora Migliore , Jessica L. Asay , Jennifer C. Erhart-Hledik , Thomas P. Andriacchi
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引用次数: 0

摘要

背景本研究的目的是检验前交叉韧带重建 2 年后的受试者在机械行走刺激下步态期间促炎细胞因子与膝关节负荷力学相关性的假设。促炎细胞因子的全身水平升高可在受伤后持续数年。考虑到这些患者中约有 50% 在受伤 10-15 年后发展为骨关节炎,因此需要更好地了解肿瘤坏死因子-α 和白细胞介素-1β 等促炎细胞因子对骨关节炎风险的作用。方法:对 21 名受试者进行血清促炎细胞因子浓度测量,这些受试者在单侧前交叉韧带重建 2 年后,分别在休息时和行走 30 分钟后 3.5 小时抽血。光电系统和测力板测量了受试者的膝关节运动能力。研究结果机械刺激引起的促炎细胞因子的变化具有相关性(R = 0.86),并且在步行后 3.5 小时两种细胞因子的变化在受试者之间存在很大差异。膝关节负荷与 3.5 小时后肿瘤坏死因子-α 浓度(膝关节伸展力矩:R = -0.5,膝关节内收力矩:R = -0.5)和白细胞介素-1β 浓度(膝关节伸展力矩:R = -0.44)的变化相关。在机械刺激后血清促炎标志物的变化与骨关节炎高危人群的步态指标之间的显著关联强调了研究骨关节炎发展过程中生物标志物与生物力学因素之间相互作用的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elevated proinflammatory cytokines in response to mechanical stimulus are associated with reduced knee loading 2 years after anterior cruciate ligament reconstruction

Background

The aim of this study was to test the hypothesis that proinflammatory cytokines correlate with knee loading mechanics during gait following a mechanical walking stimulus in subjects 2 years after anterior cruciate ligament reconstruction. Elevated systemic levels of proinflammatory cytokines can be sustained for years after injury. Considering roughly 50% of these patients progress to Osteoarthritis 10–15 years after injury, a better understanding of the role of proinflammatory cytokines such as tumor necrosis factor-α and Interleukin-1β on Osteoarthritis risk is needed.

Methods

Serum proinflammatory cytokines concentrations were measured in 21 subjects 2 years after unilateral ACLR from blood drawn at rest and 3.5 h after 30 min of walking. An optoelectronic system and a force plate measured subjects' knee kinetics. Correlations were tested between inflammatory marker response and knee extension and knee adduction moments.

Findings

Changes in proinflammatory cytokines due to mechanical stimulus were correlated (R = 0.86) and showed substantial variation between subjects in both cytokines at 3.5 h post-walk. Knee loading correlated with 3.5-h changes in tumor necrosis factor-α concentration (Knee extension moment: R = -0.5, Knee adduction moment: R = -0.5) and Interleukin-1β concentration (Knee extension moment: R = -0.44). However, no significant changes in concentrations were observed in tumor necrosis factor-α and Interleukin-1β when comparing baseline and post walking stimulus conditions.

Interpretation

The significant associations between changes in serum proinflammatory markers following a mechanical stimulus and gait metrics in subjects at risk for developing Osteoarthritis underscore the importance of investigating the interaction between biomarkers and biomechanical factors in Osteoarthritis development.

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来源期刊
Clinical Biomechanics
Clinical Biomechanics 医学-工程:生物医学
CiteScore
3.30
自引率
5.60%
发文量
189
审稿时长
12.3 weeks
期刊介绍: Clinical Biomechanics is an international multidisciplinary journal of biomechanics with a focus on medical and clinical applications of new knowledge in the field. The science of biomechanics helps explain the causes of cell, tissue, organ and body system disorders, and supports clinicians in the diagnosis, prognosis and evaluation of treatment methods and technologies. Clinical Biomechanics aims to strengthen the links between laboratory and clinic by publishing cutting-edge biomechanics research which helps to explain the causes of injury and disease, and which provides evidence contributing to improved clinical management. A rigorous peer review system is employed and every attempt is made to process and publish top-quality papers promptly. Clinical Biomechanics explores all facets of body system, organ, tissue and cell biomechanics, with an emphasis on medical and clinical applications of the basic science aspects. The role of basic science is therefore recognized in a medical or clinical context. The readership of the journal closely reflects its multi-disciplinary contents, being a balance of scientists, engineers and clinicians. The contents are in the form of research papers, brief reports, review papers and correspondence, whilst special interest issues and supplements are published from time to time. Disciplines covered include biomechanics and mechanobiology at all scales, bioengineering and use of tissue engineering and biomaterials for clinical applications, biophysics, as well as biomechanical aspects of medical robotics, ergonomics, physical and occupational therapeutics and rehabilitation.
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