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  4. A serial multiparametric quantitative magnetic resonance imaging study to assess proteoglycan depletion of human articular cartilage and its effects on functionality
 
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A serial multiparametric quantitative magnetic resonance imaging study to assess proteoglycan depletion of human articular cartilage and its effects on functionality

Citation Link: https://doi.org/10.15480/882.2927
Publikationstyp
Journal Article
Date Issued
2020-09-15
Sprache
English
Author(s)
Hafner, Tobias  
Schock, Justus  
Post, Manuel  
Abrar, Daniel Benjamin  
Sewerin, Philipp  
Linka, Kevin  
Knobe, Matthias  
Kuhl, Christiane  
Truhn, Daniel  
Nebelung, Sven  
Institut
Kontinuums- und Werkstoffmechanik M-15  
TORE-DOI
10.15480/882.2927
TORE-URI
http://hdl.handle.net/11420/7402
Journal
Scientific reports  
Volume
10
Issue
1
Article Number
15106
Citation
Scientific Reports 1 (10): 15106 (2020-12-01)
Publisher DOI
10.1038/s41598-020-72208-y
Scopus ID
2-s2.0-85091053814
PubMed ID
32934341
Water, collagen, and proteoglycans determine articular cartilage functionality. If altered, susceptibility to premature degeneration is increased. This study investigated the effects of enzymatic proteoglycan depletion on cartilage functionality as assessed by advanced Magnetic Resonance Imaging (MRI) techniques under standardized loading. Lateral femoral condylar cartilage-bone samples from patients undergoing knee replacement (n = 29) were serially imaged by Proton Density-weighted and T1, T1ρ, T2, and T2* mapping sequences on a clinical 3.0 T MRI scanner (Achieva, Philips). Using pressure-controlled indentation loading, samples were imaged unloaded and quasi-statically loaded to 15.1 N and 28.6 N, and both before and after exposure to low-concentrated (LT, 0.1 mg/mL, n = 10) or high-concentrated trypsin (HT, 1.0 mg/mL, n = 10). Controls were not treated (n = 9). Responses to loading were assessed for the entire sample and regionally, i.e. sub- and peri-pistonally, and zonally, i.e. upper and lower sample halves. Trypsin effects were quantified as relative changes (Δ), analysed using appropriate statistical tests, and referenced histologically. Histological proteoglycan depletion was reflected by significant sub-pistonal decreases in T1 (p = 0.003) and T2 (p = 0.008) after HT exposure. Loading-induced changes in T1ρ and T2* were not related. In conclusion, proteoglycan depletion alters cartilage functionality and may be assessed using serial T1 and T2 mapping under loading.
DDC Class
600: Technik
Lizenz
https://creativecommons.org/licenses/by/4.0/
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