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The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study

Familial hypercholesterolemia, a common genetic metabolic disorder characterized by high cholesterol levels, is involved in the development of atherosclerosis and other preventable diseases. Familial hypercholesterolemia can also cause tendinous abnormalities, such as thickening and xanthoma (tendon...

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Autores principales: Squier, Kipling, Scott, Alexander, Hunt, Michael A., Brunham, Liam R., Wilson, David R., Screen, Hazel, Waugh, Charlie M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8445482/
https://www.ncbi.nlm.nih.gov/pubmed/34529718
http://dx.doi.org/10.1371/journal.pone.0257269
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author Squier, Kipling
Scott, Alexander
Hunt, Michael A.
Brunham, Liam R.
Wilson, David R.
Screen, Hazel
Waugh, Charlie M.
author_facet Squier, Kipling
Scott, Alexander
Hunt, Michael A.
Brunham, Liam R.
Wilson, David R.
Screen, Hazel
Waugh, Charlie M.
author_sort Squier, Kipling
collection PubMed
description Familial hypercholesterolemia, a common genetic metabolic disorder characterized by high cholesterol levels, is involved in the development of atherosclerosis and other preventable diseases. Familial hypercholesterolemia can also cause tendinous abnormalities, such as thickening and xanthoma (tendon lipid accumulation) in the Achilles, which may impede tendon biomechanics. The objective of this study was to investigate the effect of cholesterol accumulation on the biomechanical performance of Achilles tendons, in vivo. 16 participants (10 men, 6 women; 37±6 years) with familial hypercholesterolemia, diagnosed with tendon xanthoma, and 16 controls (10 men, 6 women; 36±7 years) underwent Achilles biomechanical assessment. Achilles biomechanical data was obtained during preferred pace, shod, walking by analysis of lower limb kinematics and kinetics utilizing 3D motion capture and an instrumented treadmill. Gastrocnemius medialis muscle-tendon junction displacement was imaged using ultrasonography. Achilles stiffness, hysteresis, strain and force were calculated from displacement-force data acquired during loading cycles, and tested for statistical differences using one-way ANOVA. Statistical parametric mapping was used to examine group differences in temporal data. Participants with familial hypercholesterolemia displayed lower Achilles stiffness compared to the control group (familial hypercholesterolemia group: 87±20 N/mm; controls: 111±18 N/mm; p = 0.001), which appeared to be linked to Achilles loading rate rather than an increased strain (FH: 5.27±1.2%; controls: 4.95±0.9%; p = 0.413). We found different Achilles loading patterns in the familial hypercholesterolemia group, which were traced to differences in the centre of pressure progression that affected ankle moment. This finding may indicate that individuals with familial hypercholesterolemia use different Achilles loading strategies. Participants with familial hypercholesterolemia also demonstrated significantly greater Achilles hysteresis than the control group (familial hypercholesterolemia: 57.5±7.3%; controls: 43.8±10%; p<0.001), suggesting that walking may require a greater metabolic cost. Our results indicate that cholesterol accumulation could contribute to reduced Achilles function, while potentially increasing the chance of injury.
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spelling pubmed-84454822021-09-17 The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study Squier, Kipling Scott, Alexander Hunt, Michael A. Brunham, Liam R. Wilson, David R. Screen, Hazel Waugh, Charlie M. PLoS One Research Article Familial hypercholesterolemia, a common genetic metabolic disorder characterized by high cholesterol levels, is involved in the development of atherosclerosis and other preventable diseases. Familial hypercholesterolemia can also cause tendinous abnormalities, such as thickening and xanthoma (tendon lipid accumulation) in the Achilles, which may impede tendon biomechanics. The objective of this study was to investigate the effect of cholesterol accumulation on the biomechanical performance of Achilles tendons, in vivo. 16 participants (10 men, 6 women; 37±6 years) with familial hypercholesterolemia, diagnosed with tendon xanthoma, and 16 controls (10 men, 6 women; 36±7 years) underwent Achilles biomechanical assessment. Achilles biomechanical data was obtained during preferred pace, shod, walking by analysis of lower limb kinematics and kinetics utilizing 3D motion capture and an instrumented treadmill. Gastrocnemius medialis muscle-tendon junction displacement was imaged using ultrasonography. Achilles stiffness, hysteresis, strain and force were calculated from displacement-force data acquired during loading cycles, and tested for statistical differences using one-way ANOVA. Statistical parametric mapping was used to examine group differences in temporal data. Participants with familial hypercholesterolemia displayed lower Achilles stiffness compared to the control group (familial hypercholesterolemia group: 87±20 N/mm; controls: 111±18 N/mm; p = 0.001), which appeared to be linked to Achilles loading rate rather than an increased strain (FH: 5.27±1.2%; controls: 4.95±0.9%; p = 0.413). We found different Achilles loading patterns in the familial hypercholesterolemia group, which were traced to differences in the centre of pressure progression that affected ankle moment. This finding may indicate that individuals with familial hypercholesterolemia use different Achilles loading strategies. Participants with familial hypercholesterolemia also demonstrated significantly greater Achilles hysteresis than the control group (familial hypercholesterolemia: 57.5±7.3%; controls: 43.8±10%; p<0.001), suggesting that walking may require a greater metabolic cost. Our results indicate that cholesterol accumulation could contribute to reduced Achilles function, while potentially increasing the chance of injury. Public Library of Science 2021-09-16 /pmc/articles/PMC8445482/ /pubmed/34529718 http://dx.doi.org/10.1371/journal.pone.0257269 Text en © 2021 Squier et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Squier, Kipling
Scott, Alexander
Hunt, Michael A.
Brunham, Liam R.
Wilson, David R.
Screen, Hazel
Waugh, Charlie M.
The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study
title The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study
title_full The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study
title_fullStr The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study
title_full_unstemmed The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study
title_short The effects of cholesterol accumulation on Achilles tendon biomechanics: A cross-sectional study
title_sort effects of cholesterol accumulation on achilles tendon biomechanics: a cross-sectional study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8445482/
https://www.ncbi.nlm.nih.gov/pubmed/34529718
http://dx.doi.org/10.1371/journal.pone.0257269
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