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实验性骨关节炎犬软骨损伤早期蛋白聚糖结构变化的免疫学分析

Immunological analysis of proteoglycan structural changes in the early stage of experimental osteoarthritic canine cartilage lesions.

作者信息

Pelletier J P, Martel-Pelletier J, Mehraban F, Malemud C J

机构信息

University of Montreal, Rheumatic Disease Unit, Notre-Dame Hospital Research Center, Canada.

出版信息

J Orthop Res. 1992 Jul;10(4):511-23. doi: 10.1002/jor.1100100406.

Abstract

Specific modifications of the proteoglycan (PG) structure of osteoarthritic (OA) dog cartilage in relation to endogenous metalloprotease activity were examined using murine anti-proteoglycan monoclonal antibodies (MoAbs). OA lesions were induced over a period of 8 weeks in crossbred dogs (Pond-Nuki model). The articular cartilage was removed and homogenized in a Tris buffer, pH 7.5, and then divided into four groups: direct PG extraction, no addition, presence of 1 mM p-aminophenyl mercuric acetate (APMA), and presence of 1 mM APMA and 10 mM o-phenanthroline, incubated for 42 h at 37 degrees C followed by PG extraction. MoAbs reactive with PG protein and carbohydrate epitopes included 1C6, 3B3, 5D4, D1B2, and m4D6. The results showed marked alterations induced by APMA activation of the endogenous metalloproteases. PG changes were apparent at at least three sites: one was either in the hyaluronic acid-binding region or between the hyaluronic-binding region and the G2 globular domain, another was between the keratan-sulfate-rich domain and the chondroitin sulfate-attachment domain, and a third was in the chondroitin sulfate-attachment domain. Constitutive metalloprotease activity resulted in less marked PG alterations with preservation of functional PG aggregation to hyaluronan.

摘要

利用鼠抗蛋白聚糖单克隆抗体(MoAbs),研究了骨关节炎(OA)犬软骨蛋白聚糖(PG)结构的特定修饰与内源性金属蛋白酶活性之间的关系。在杂交犬中诱导OA病变8周(Pond-Nuki模型)。取出关节软骨,在pH 7.5的Tris缓冲液中匀浆,然后分为四组:直接提取PG、不添加任何物质、添加1 mM对氨基苯基汞乙酸盐(APMA)以及添加1 mM APMA和10 mM邻菲罗啉,在37℃孵育42小时后进行PG提取。与PG蛋白和碳水化合物表位反应的MoAbs包括1C6、3B3、5D4、D1B2和m4D6。结果显示,内源性金属蛋白酶经APMA激活后诱导了显著变化。PG变化至少在三个位点明显:一个位点位于透明质酸结合区域或透明质酸结合区域与G2球状结构域之间,另一个位点位于富含硫酸角质素的结构域与硫酸软骨素附着结构域之间,第三个位点位于硫酸软骨素附着结构域。组成型金属蛋白酶活性导致PG变化不那么明显,同时保留了PG与透明质酸的功能性聚集。

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