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A type XI collagen mutation leads to increased degradation of type II collagen in articular cartilage.

机译:XI型胶原蛋白突变导致关节软骨中II型胶原蛋白的降解增加。

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OBJECTIVE: To determine in articular cartilage whether degraded type II collagen is more abundant in Col11a1 mutant cho/+ than in age-matched +/+ mice and whether collagen degradation occurs in a generalized or localized fashion. DESIGN: Knee joints from cho/+ and +/+ mice at 6, 9, 12 and 15 months of age were dissected, fixed, cryosectioned, and stained with antibody COL2-3/4m against denatured type II collagen using a FITC-conjugated secondary antibody. Sections were viewed and photographed under a fluorescence microscope and areas of staining were quantified. RESULTS: Before 12 months of age, little degraded collagen staining was detectable in +/+ or cho/+ mice. By 15 months, however, cho/+ mice showed significantly more degraded type II collagen than age-matched controls. Degraded collagen staining was localized at the articular surface, not distributed generally throughout the articular cartilage. CONCLUSIONS: The results suggest a model in which cumulative biomechanical stresses trigger increasedcollagen synthesis and degradation in both +/+ and cho/+ mice at around 12 months of age. Cho/+ mice, however, are less able to synthesize and assemble normal replacement collagen fibrils because of the Col11a1 mutation. Degradation is further activated, resulting in the accumulation of degraded type II collagen in the articular cartilage extracellular matrix. Similar mutations that do not overtly affect skeletal development may likewise predispose humans to increased collagen degradation and resultant osteoarthritis.
机译:目的:确定在关节软骨中,Col11a1突变体cho / +中降解的II型胶原蛋白是否比年龄匹配的+ / +小鼠中更丰富,以及胶原蛋白的降解是普遍发生还是局部发生。设计:分别解剖,固定,冷冻切片并用FITC偶联的抗变性II型胶原的COL2-3 / 4m抗体对来自cho / +和+ / +小鼠在6、9、12和15个月大的膝关节进行解剖,固定,冷冻切片和染色二抗。在荧光显微镜下观察切片并拍照,并对染色区域进行定量。结果:在12个月大之前,在+ / +或cho / +小鼠中几乎检测不到降解的胶原蛋白染色。然而,到15个月时,与年龄匹配的对照组相比,cho / +小鼠的II型胶原蛋白降解明显更多。降解的胶原蛋白染色位于关节表面,通常不分布在整个关节软骨中。结论:结果提示了一个模型,其中累积的生物力学应力在大约12个月大时触发+ / +和cho / +小鼠中胶原蛋白的合成和降解增加。但是,由于Col11a1突变,Cho / +小鼠合成和组装正常替代胶原纤维的能力较弱。降解被进一步激活,导致降解的II型胶原在关节软骨细胞外基质中积聚。不会明显影响骨骼发育的类似突变也可能使人类更易发生胶原蛋白降解和骨关节炎。

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