首页> 外文期刊>Osteoarthritis and cartilage >Alteration of N-glycans related to articular cartilage deterioration after anterior cruciate ligament transection in rabbits.
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Alteration of N-glycans related to articular cartilage deterioration after anterior cruciate ligament transection in rabbits.

机译:兔前交叉韧带横断后与关节软骨恶化相关的N-聚糖变化。

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摘要

OBJECTIVE: Osteoarthritis (OA) is the most common of all joint diseases, but the molecular basis of its onset and progression is controversial. Several studies have shown that modifications of N-glycans contribute to pathogenesis. However, little attention has been paid to N-glycan modifications seen in articular cartilage. The goal of this study was to identify disease specific N-glycan expression profiles in degenerated cartilage in a rabbit OA model induced by anterior cruciate ligament transection (ACLT). METHODS: Cartilage samples were harvested at 7, 10, 14, and 28 days after ACLT and assessed for cartilage degeneration and alteration in N-glycans. N-Glycans from cartilage were analyzed by high performance liquid chromatography and mass spectrometry. RESULTS: Histological analysis showed that osteoarthritic changes in cartilage occurred 10 days after ACLT. Apparent alterations in the N-glycan peak pattern in cartilage samples were observed 7 days after ACLT, and overall N-glycan changes in OA reflected alterations in both sialylation and fucosylation. These changes apparently preceded histological changes in cartilage. CONCLUSION: These results indicate that changes in the expression of N-glycans are correlated with OA in an animal model. Understanding mechanisms underlying changes in N-glycans seen in OA may be of therapeutic value in treating cartilage deterioration.
机译:目的:骨关节炎(OA)是所有关节疾病中最常见的疾病,但其发病和进展的分子基础仍存在争议。几项研究表明,N-聚糖的修饰有助于发病。然而,很少有人关注关节软骨中的N-聚糖修饰。这项研究的目的是在前交叉韧带横断(ACLT)诱发的兔OA模型中,鉴定变性软骨中特定于疾病的N-聚糖表达谱。方法:在ACLT后第7、10、14和28天收集软骨样品,并评估其软骨变性和N-聚糖变化。通过高效液相色谱和质谱分析软骨中的N-聚糖。结果:组织学分析显示,ACLT后10天软骨发生骨关节炎变化。 ACLT 7天后观察到软骨样品中N-聚糖峰型的明显变化,而OA中N-聚糖的总体变化反映了唾液酸化和岩藻糖基化的变化。这些变化显然先于软骨的组织学变化。结论:这些结果表明,在动物模型中,N-聚糖表达的变化与OA有关。了解在OA中看到的N-聚糖变化的潜在机制可能对治疗软骨恶化具有治疗价值。

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