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肌腱蛋白-C的表达控制小鼠关节软骨的成熟。

Tenascin-C expression controls the maturation of articular cartilage in mice.

作者信息

Gruber Bastian L, Mienaltowski Michael J, MacLeod James N, Schittny Johannes, Kasper Stephanie, Flück Martin

机构信息

Laboratory for Muscle Plasticity, Department of Orthopedics, University of Zurich, Balgrist Campus, Lengghalde 5, 8008, Zurich, Switzerland.

Gluck Equine Research Center, Department of Veterinary Science, University of Kentucky, Lexington, KY, USA.

出版信息

BMC Res Notes. 2020 Feb 17;13(1):78. doi: 10.1186/s13104-020-4906-8.

Abstract

OBJECTIVE

Expression of the de-adhesive extracellular matrix protein tenascin-C (TNC) is associated with the early postnatal development of articular cartilage which is both load-dependent and associated with chondrocyte differentiation. We assessed morphological changes in the articular cartilage of TNC deficient mice at postnatal ages of 1, 4 and 8 weeks compared to age-matched wildtype mice.

RESULTS

Cartilage integrity was assessed based on hematoxylin and eosin stained-sections from the tibial bone using a modified Mankin score. Chondrocyte density and cartilage thickness were assessed morphometrically. TNC expression was localized based on immunostaining. At 8 weeks of age, the formed tangential/transitional zone of the articular cartilage was 27% thicker and the density of chondrocytes in the articular cartilage was 55% lower in wildtype than the TNC-deficient mice. TNC protein expression was associated with chondrocytes. No relevant changes were found in mice at 1 and 4 weeks of age. The findings indicate a role of tenascin-C in the post-natal maturation of the extracellular matrix in articular cartilage. This might be a compensatory mechanism to strengthen resilience against mechanical stress.

摘要

目的

去黏附性细胞外基质蛋白腱生蛋白-C(TNC)的表达与出生后早期关节软骨的发育相关,这种发育既依赖负荷,又与软骨细胞分化有关。我们评估了与年龄匹配的野生型小鼠相比,TNC基因缺陷小鼠在出生后1周、4周和8周时关节软骨的形态学变化。

结果

使用改良的曼金评分法,基于苏木精和伊红染色的胫骨切片评估软骨完整性。通过形态测量法评估软骨细胞密度和软骨厚度。基于免疫染色对TNC表达进行定位。在8周龄时,野生型小鼠关节软骨形成的切线/过渡区比TNC基因缺陷小鼠厚27%,关节软骨中的软骨细胞密度低55%。TNC蛋白表达与软骨细胞相关。在1周龄和4周龄的小鼠中未发现相关变化。这些发现表明腱生蛋白-C在关节软骨细胞外基质的出生后成熟过程中发挥作用。这可能是一种增强抗机械应力弹性的补偿机制。

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