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首页> 外文期刊>Journal of Zhejiang University. Science, B >Promotion of the articular cartilage proteoglycan degradation by T-2 toxin and selenium protective effect
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Promotion of the articular cartilage proteoglycan degradation by T-2 toxin and selenium protective effect

机译:T-2毒素和硒对关节软骨蛋白聚糖降解的促进作用

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Objective: To identify the relationship between T-2 toxin and Kashin-Beck disease (KBD), the effects of T-2 toxin on aggrecan metabolism in human chondrocytes and cartilage were investigated in vitro. Methods: Chondrocytes were isolated from human articular cartilage and cultured in vitro. Hyaluronic acid (HA), soluble CD44 (sCD44), IL-1beta and TNF-alpha levels in supernatants were measured by enzyme-linked immunosorbent assay (ELISA). CD44 content in chondrocyte membrane was determined by flow cytometry (FCM). CD44, hyaluronic acid synthetase-2 (HAS-2) and aggrecanases mRNA levels in chondrocytes were determined using reverse transcription polymerase chain reaction (RT-PCR). Immunocytochemical method was used to investigate expressions of BC-13, 3-B-3(-) and 2-B-6 epitopes in the cartilage reconstructed in vitro. Results: T-2 toxin inhibited CD44, HAS-2, and aggrecan mRNA expressions, but promoted aggrecanase-2 mRNA expression. Meanwhile, CD44 expression was found to be the lowest in the chondrocytes cultured with T-2 toxin and the highest in control plus selenium group. In addition, ELISA results indicated that there were higher sCD44, IL-1beta and TNF-alpha levels in T-2 toxin group. Similarly, higher HA levels were also observed in T-2 toxin group using radioimmunoprecipitation assay (RIPA). Furthermore, using monoclonal antibodies BC-13, 3-B-3 and 2-B-6, strong positive immunostaining was found in the reconstructed cartilage cultured with T-2 toxin, whereas no positive staining or very weak staining was observed in the cartilage cultured without T-2 toxin. Selenium could partly inhibit the effects of T-2 toxin above. Conclusion: T-2 toxin could inhibit aggrecan synthesis, promote aggrecanases and pro-inflammatory cytokines production, and consequently induce aggrecan degradation in chondrocytes. These will perturb metabolism balance between aggrecan synthesis and degradation in cartilage, inducing aggrecan loss in the end, which may be the initiation of the cartilage degradation.
机译:目的:探讨T-2毒素与Kashin-Beck病(KBD)的关系,探讨T-2毒素对人软骨细胞软骨聚集蛋白聚糖代谢的影响。方法:从人关节软骨中分离软骨细胞并进行体外培养。通过酶联免疫吸附测定(ELISA)测量上清液中的透明质酸(HA),可溶性CD44(sCD44),IL-1beta和TNF-α的水平。软骨细胞膜中的CD44含量通过流式细胞仪(FCM)测定。使用逆转录聚合酶链反应(RT-PCR)测定软骨细胞中的CD44,透明质酸合成酶2(HAS-2)和软骨聚集蛋白聚糖mRNA水平。采用免疫细胞化学方法研究了BC-13、3-B-3(-)和2-B-6表位在体外重建软骨中的表达。结果:T-2毒素抑制CD44,HAS-2和蛋白聚糖表达,但促进蛋白聚糖酶2表达。同时,发现CD44表达在用T-2毒素培养的软骨细胞中最低,而在对照加硒组中最高。此外,ELISA结果表明,T-2毒素组的sCD44,IL-1beta和TNF-α水平较高。同样,使用放射免疫沉淀测定法(RIPA)在T-2毒素组中也观察到更高的HA水平。此外,使用单克隆抗体BC-13、3-B-3和2-B-6,在用T-2毒素培养的重建软骨中发现强阳性免疫染色,而在软骨中未观察到阳性染色或非常弱的染色培养不含T-2毒素。硒可以部分抑制上述T-2毒素的作用。结论:T-2毒素可抑制软骨聚集蛋白聚糖的合成,促进软骨聚集蛋白聚糖酶和促炎细胞因子的产生,从而诱导软骨聚集蛋白聚糖降解。这些将扰乱软骨聚集蛋白聚糖的合成与降解之间的新陈代谢平衡,最终导致软骨聚集蛋白的丢失,这可能是软骨降解的开始。

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