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GDF-6 缺乏对小鼠肌腱影响的性别二态性。

Sexual dimorphism in the effect of GDF-6 deficiency on murine tendon.

机构信息

Picker Engineering Program, Smith College, Northampton, Massachusetts 01063, USA.

出版信息

J Orthop Res. 2009 Dec;27(12):1603-11. doi: 10.1002/jor.20916.

Abstract

Three members of the growth/differentiation factor (GDF) subfamily of bone morphogenetic proteins (BMPs), GDFs-5, -6, and -7, have demonstrated the potential to augment tendon and ligament repair. To gain further insight into the in vivo role of these molecules, previous studies have characterized intact and healing tendons in mice with functional null mutations in GDF-5 and -7. The primary goal of the present study was to perform a detailed characterization of the intact tendon phenotype in 4- and 16-week-old male and female GDF6-/- mice and their +/+ littermates. The results demonstrate that GDF6 deficiency was associated with an altered tendon phenotype that persisted into adulthood. Among males, GDF6-/- tail tendon fascicles had significantly less collagen and glycosaminoglycan content, and these compositional differences were associated with compromised material properties. The effect of GDF6 deficiency on tendon was sexually dimorphic, however, for among female GDF6-/- mice, neither differences in tendon composition nor in material properties were detected. The tendon phenotype that was observed in males appeared to be stronger in the tail site than in the Achilles tendon site, where some compositional differences were present, but no material property differences were detected. These data support existing in vitro studies, which suggest a potential role for BMP-13 (the human homologue to GDF-6) in tendon matrix modeling and/or remodeling.

摘要

生长/分化因子(GDF)亚家族的三个成员,即 GDFs-5、-6 和 -7,已显示出增强肌腱和韧带修复的潜力。为了更深入地了解这些分子在体内的作用,以前的研究已经对 GDF-5 和 -7 功能缺失突变的小鼠的完整和愈合肌腱进行了特征描述。本研究的主要目的是详细描述 4 周和 16 周龄雄性和雌性 GDF6-/- 小鼠及其 +/+ 同窝仔鼠的正常肌腱表型。结果表明,GDF6 缺乏与持续到成年期的改变的肌腱表型有关。在雄性中,GDF6-/- 尾腱束含有明显较少的胶原和糖胺聚糖,这些组成差异与材料性能受损有关。GDF6 缺乏对肌腱的影响存在性别二态性,但在雌性 GDF6-/- 小鼠中,既没有检测到肌腱组成的差异,也没有检测到材料性能的差异。在雄性中观察到的肌腱表型在尾部部位比在跟腱部位更强,尾部部位存在一些组成差异,但没有检测到材料性能差异。这些数据支持现有的体外研究,这些研究表明 BMP-13(GDF-6 的人同源物)在肌腱基质建模和/或重塑中可能具有潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4464/2925107/e91f8247fa0f/nihms-228038-f0001.jpg

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