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一种用于早期半月板退变的猪动物模型——前交叉韧带切除术后六个月的组织学、基因表达及磁共振成像分析

A Porcine Animal Model for Early Meniscal Degeneration - Analysis of Histology, Gene Expression and Magnetic Resonance Imaging Six Months after Resection of the Anterior Cruciate Ligament.

作者信息

Kreinest Michael, Reisig Gregor, Ströbel Philipp, Dinter Dietmar, Attenberger Ulrike, Lipp Peter, Schwarz Markus

机构信息

Department of Experimental Orthopedics and Trauma Surgery, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.

Department of Molecular Cell Biology, University Medical Centre Homburg, Saarland University, Homburg/Saar, Germany.

出版信息

PLoS One. 2016 Jul 19;11(7):e0159331. doi: 10.1371/journal.pone.0159331. eCollection 2016.

Abstract

BACKGROUND/OBJECTIVE: The menisci of the mammalian knee joint balance the incongruence between femoral condyle and tibial plateau and thus menisci absorb and distribute high loads. Degeneration processes of the menisci lead to pain syndromes in the knee joint. The origin of such degenerative processes on meniscal tissue is rarely understood and may be described best as an imbalance of anabolic and catabolic metabolism. A standardized animal model of meniscal degeneration is needed for further studies. The aim of the current study was to develop a porcine animal model with early meniscal degeneration.

MATERIAL AND METHODS

Resection of the anterior cruciate ligament (ACLR) was performed on the left knee joints of eight Göttingen minipigs. A sham operation was carried out on the right knee joint. The grade of degeneration was determined 26 weeks after the operation using histology and magnetic resonance imaging (MRI). Furthermore, the expression of 14 genes which code for extracellular matrix proteins, catabolic matrix metalloproteinases and inflammation mediators were analyzed.

RESULTS

Degenerative changes were detected by a histological analysis of the medial meniscus after ACLR. These changes were not detected by MRI. In terms of their gene expression profile, these degenerated medial menisci showed a significantly increased expression of COL1A1.

CONCLUSION

This paper describes a new animal model for early secondary meniscal degeneration in the Göttingen minipig. Histopathological evidence of the degenerative changes could be described. This early degenerative changes could not be seen by NMR imaging.

摘要

背景/目的:哺乳动物膝关节半月板可平衡股骨髁与胫骨平台之间的不协调,因此半月板能吸收和分散高负荷。半月板退变过程会导致膝关节疼痛综合征。半月板组织这种退变过程的起源鲜为人知,最好将其描述为合成代谢与分解代谢的失衡。进一步研究需要标准化的半月板退变动物模型。本研究的目的是建立一种早期半月板退变的猪动物模型。

材料与方法

对8只哥廷根小型猪的左膝关节进行前交叉韧带切除(ACLR)。右膝关节进行假手术。术后26周,使用组织学和磁共振成像(MRI)确定退变程度。此外,分析了14种编码细胞外基质蛋白、分解代谢基质金属蛋白酶和炎症介质的基因的表达情况。

结果

通过ACLR后内侧半月板的组织学分析检测到退变变化。MRI未检测到这些变化。就基因表达谱而言,这些退变的内侧半月板显示COL1A1表达显著增加。

结论

本文描述了一种哥廷根小型猪早期继发性半月板退变的新动物模型。可以描述退变变化的组织病理学证据。这种早期退变变化在核磁共振成像中无法看到。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ac6/4951152/c4004b90111d/pone.0159331.g001.jpg

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