Assessment of articular cartilage degradation in response to an impact injury using µMRI.

IF 2.8 4区 医学 Q3 CELL BIOLOGY Connective Tissue Research Pub Date : 2024-03-01 Epub Date: 2024-02-28 DOI:10.1080/03008207.2024.2319050
Amanveer Singh, Hannah Mantebea, Farid Badar, Syeda Batool, Gabrielle Abdelmessih, Talia Sebastian, Michael Newton, Kevin Baker, Sarah Salem, Yang Xia
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Abstract

Purpose: Degradation of articular cartilage (AC) due to injury to the knee joint may initiate post-traumatic osteoarthritis (PTOA). Failure to diagnose the onset of the disease at an early stage makes the cure ineffective for PTOA. This study investigated the consequences of a mechanical injury to the knee in a rabbit model using microscopic magnetic resonance imaging (µMRI) at high resolution.

Materials and methods: A mechanical injury was induced to the knee joints of 12 rabbits. Cartilage blocks were extracted from the non-impacted and impacted knee joints after 2 and 14 weeks post-impact. The specimens were studied using µMRI T2 relaxation and inductively coupled plasma analysis to determine the early degradation of the articular cartilage.

Results: The data established a connection between T2 relaxation time and the early progression of knee PTOA after an impact injury. T2 values were found to be higher in the impacted cartilage at both 2 and 14 weeks, in particular, T2-55° values in the impacted samples displayed a significant rise of 6.93% after 2 weeks and 20.02% after 14 weeks. Lower glycosaminoglycan measurement and higher water content in the impacted cartilage confirmed the µMRI results.

Conclusions: This µMRI T2 study was able to detect cartilage damage in the impacted knees. In addition, greater degradation in the affected knees at 14 weeks than at 2 weeks indicated the progressive nature of cartilage deterioration over time. The µMRI results were in accord with the biochemical analysis, indicating the detection of early structural damage in the cartilage.

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利用 µMRI 评估关节软骨对撞击损伤的退化反应。
目的:膝关节受伤导致的关节软骨(AC)退化可能引发创伤后骨关节炎(PTOA)。如果不能在早期诊断出疾病,则无法有效治愈 PTOA。本研究利用高分辨率显微磁共振成像(µMRI)研究了兔子模型膝关节机械损伤的后果:对 12 只兔子的膝关节进行机械损伤。分别在撞击后 2 周和 14 周从未受损伤和受损伤的膝关节中提取软骨块。使用 µMRI T2 弛豫和电感耦合等离子体分析法对标本进行研究,以确定关节软骨的早期退化情况:结果:数据显示,T2弛豫时间与撞击损伤后膝关节PTOA的早期进展之间存在联系。研究发现,撞击软骨的 T2 值在 2 周和 14 周时都较高,尤其是撞击样本的 T2-55° 值在 2 周后显著上升了 6.93%,在 14 周后上升了 20.02%。受影响软骨中较低的糖胺聚糖测量值和较高的含水量证实了 µMRI 的结果:这项 µMRI T2 研究能够检测到受影响膝关节的软骨损伤。结论:这项 µMRI T2 研究能够检测到受影响膝关节的软骨损伤,此外,受影响膝关节在 14 周时的退化程度大于 2 周时的退化程度,这表明随着时间的推移,软骨会逐渐退化。µMRI结果与生化分析结果一致,表明检测到了软骨的早期结构损伤。
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来源期刊
Connective Tissue Research
Connective Tissue Research 生物-细胞生物学
CiteScore
6.60
自引率
3.40%
发文量
37
审稿时长
2 months
期刊介绍: The aim of Connective Tissue Research is to present original and significant research in all basic areas of connective tissue and matrix biology. The journal also provides topical reviews and, on occasion, the proceedings of conferences in areas of special interest at which original work is presented. The journal supports an interdisciplinary approach; we present a variety of perspectives from different disciplines, including Biochemistry Cell and Molecular Biology Immunology Structural Biology Biophysics Biomechanics Regenerative Medicine The interests of the Editorial Board are to understand, mechanistically, the structure-function relationships in connective tissue extracellular matrix, and its associated cells, through interpretation of sophisticated experimentation using state-of-the-art technologies that include molecular genetics, imaging, immunology, biomechanics and tissue engineering.
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