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首页> 外文期刊>Arthritis Research >Fragmentation of decorin, biglycan, lumican and keratocan is elevated in degenerate human meniscus, knee and hip articular cartilages compared with age-matched macroscopically normal and control tissues
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Fragmentation of decorin, biglycan, lumican and keratocan is elevated in degenerate human meniscus, knee and hip articular cartilages compared with age-matched macroscopically normal and control tissues

机译:与年龄相匹配的宏观正常组织和对照组织相比,退化的人半月板,膝关节和髋关节软骨中的除芯蛋白,双糖链蛋白聚糖,卢米肯胶和角蛋白聚糖的碎片增多

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Introduction The small leucine-rich proteoglycans (SLRPs) modulate tissue organization, cellular proliferation, matrix adhesion, growth factor and cytokine responses, and sterically protect the surface of collagen type I and II fibrils from proteolysis. Catabolism of SLRPs has important consequences for the integrity of articular cartilage and meniscus by interfering with their tissue homeostatic functions. Methods SLRPs were dissociatively extracted from articular cartilage from total knee and hip replacements, menisci from total knee replacements, macroscopically normal and fibrillated knee articular cartilage from mature age-matched donors, and normal young articular cartilage. The tissue extracts were digested with chondroitinase ABC and keratanase-I before identification of SLRP core protein species by Western blotting using antibodies to the carboxyl-termini of the SLRPs. Results Multiple core-protein species were detected for all of the SLRPs (except fibromodulin) in the degenerate osteoarthritic articular cartilage and menisci. Fibromodulin had markedly less fragments detected with the carboxyl-terminal antibody compared with other SLRPs. There were fewer SLRP catabolites in osteoarthritic hip than in knee articular cartilage. Fragmentation of all SLRPs in normal age-matched, nonfibrillated knee articular cartilage was less than in fibrillated articular cartilage from the same knee joint or total knee replacement articular cartilage specimens of similar age. There was little fragmentation of SLRPs in normal control knee articular cartilage. Only decorin exhibited a consistent increase in fragmentation in menisci in association with osteoarthritis. There were no fragments of decorin, biglycan, lumican, or keratocan that were unique to any tissue. A single fibromodulin fragment was detected in osteoarthritic articular cartilage but not meniscus. All SLRPs showed a modest age-related increase in fragmentation in knee articular and meniscal cartilage but not in other tissues. Conclusion Enhanced fragmentation of SLRPs is evident in degenerate articular cartilage and meniscus. Specific decorin and fibromodulin core protein fragments in degenerate meniscus and/or human articular cartilage may be of value as biomarkers of disease. Once the enzymes responsible for their generation have been identified, further research may identify them as therapeutic targets.
机译:简介富含亮氨酸的小蛋白聚糖(SLRP)调节组织结构,细胞增殖,基质粘附,生长因子和细胞因子的反应,并在空间上保护I型和II型胶原蛋白原纤维的表面免受蛋白水解作用。 SLRP的分解代谢通过干扰其组织稳态功能,对关节软骨和半月板的完整性具有重要的意义。方法从全膝关节和髋关节置换的关节软骨,全膝关节置换的半月板,从年龄匹配的供体宏观上正常和原纤化的膝关节软骨以及正常的年轻关节软骨中解离提取SLRPs。用软骨素酶ABC和角质酶I消化组织提取物,然后使用抗SLRPs羧基末端的抗体通过蛋白质印迹法鉴定SLRP核心蛋白种类。结果在退化的骨关节炎关节软骨和半月板中,所有SLRP(纤维调节蛋白除外)均检测到多种核心蛋白。与其他SLRP相比,纤维调节蛋白的羧基末端抗体检测到的片段明显更少。骨关节炎髋关节的SLRP分解代谢物少于膝关节软骨。正常年龄匹配的非原纤化膝关节软骨中所有SLRP的碎裂均小于同一膝关节或相似年龄的全膝关节置换软骨标本的原纤化软骨中的碎裂。在正常对照膝关节软骨中,SLRP几乎没有碎裂。与骨关节炎相关的仅decorin在半月板中显示出一致的碎裂增加。没有任何任何组织特有的除蛋白,双糖链蛋白聚糖,卢米肯胶或角蛋白聚糖的片段。在骨关节炎关节软骨中检测到单个纤维调节蛋白片段,但在半月板中未检测到。所有SLRPs均显示与年龄相关的膝关节和半月板软骨断裂适度增加,但其他组织则没有。结论退化的关节软骨和半月板明显增强了SLRPs的断裂。退化的半月板和/或人关节软骨中的特定核心蛋白聚糖和纤维调节蛋白核心蛋白片段可能具有作为疾病的生物标志物的价值。一旦确定了负责其生成的酶,进一步的研究可能会将其确定为治疗靶标。

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