首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Initial Harm Reduction by N-Acetylcysteine Alleviates Cartilage Degeneration after Blunt Single-Impact Cartilage Trauma in Vivo
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Initial Harm Reduction by N-Acetylcysteine Alleviates Cartilage Degeneration after Blunt Single-Impact Cartilage Trauma in Vivo

机译:N-乙酰半胱氨酸的初步减毒作用减轻了钝性单侧软骨创伤后体内的软骨变性

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摘要

Joint injuries are highly associated with the development of post-traumatic osteoarthritis. Previous studies revealed cell- and matrix-protective effects of N-acetylcysteine (NAC) after ex vivo cartilage trauma, while chondroanabolic stimulation with bone morphogenetic protein 7 (BMP7) enhanced type II collagen (COL2) expression. Here, as a next step, we investigated the combined and individual efficacy of intra-articular antioxidative and chondroanabolic treatment in a rabbit in vivo cartilage trauma model. Animals were randomly divided into group A (right joint: trauma (T); left joint: T+BMP7) and group B (right joint: T+NAC; left joint: T+BMP7+NAC). Condyles were impacted with the use of a spring-loaded impact device to ensure defined, single trauma administration. After 12 weeks, histopathological analysis was performed and the presence of matrix metalloproteinase 13 (MMP-13) and COL2 was assessed. Trauma-induced hypocellularity, MMP-13 expression, and cell cluster formation were reduced in NAC-treated animals. In contrast, BMP7 further increased cluster formation. Moreover, synovial concentrations of COL2 carboxy propeptide (CPII) and proteoglycan staining intensities were enhanced in NAC- and NAC+BMP7-treated joints. For the first time, the efficacy of NAC regarding early harm reduction after blunt cartilage trauma was demonstrated in vivo. However, parallel administration of BMP7 was not significantly superior compared to NAC alone.
机译:关节损伤与创伤后骨关节炎的发展高度相关。先前的研究揭示了离体软骨损伤后N-乙酰半胱氨酸(NAC)对细胞和基质的保护作用,而软骨形态代谢蛋白7(BMP7)的软骨同化刺激增强了II型胶原(COL2)的表达。在这里,作为下一步,我们研究了兔体内软骨创伤模型中关节内抗氧化和软骨降糖治疗的联合和个体疗效。将动物随机分为A组(右关节:创伤(T);左关节:T + BMP7)和B组(右关节:T + NAC;左关节:T + BMP7 + NAC)。 a突受到弹簧加载冲击装置的影响,以确保明确的单次创伤管理。 12周后,进行组织病理学分析,并评估基质金属蛋白酶13(MMP-13)和COL2的存在。在NAC治疗的动物中,创伤引起的细胞减少,MMP-13表达和细胞簇形成减少。相反,BMP7进一步增加了簇的形成。此外,在NAC和NAC + BMP7处理的关节中,滑膜浓度的COL2羧基前肽(CPII)和蛋白聚糖染色强度增加。首次在体内证实了NAC在钝性软骨创伤后早期减轻伤害方面的功效。但是,与单独使用NAC相比,并行给予BMP7的效果并不明显。

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