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肌腱附着点处甲状旁腺激素相关蛋白(PTHrP)表达的机械调节

Mechanical regulation of PTHrP expression in entheses.

作者信息

Chen Xuesong, Macica Carolyn, Nasiri Ali, Judex Stefan, Broadus Arthur E

机构信息

Section of Endocrinology, Department of Internal Medicine, Yale University School of Medicine, New Haven, CT 06520-8020, USA.

出版信息

Bone. 2007 Nov;41(5):752-9. doi: 10.1016/j.bone.2007.07.020. Epub 2007 Aug 11.

Abstract

The PTHrP gene is expressed in the periosteum and in tendon and ligament insertion sites in a PTHrP-lacZ knockin reporter mouse. Here, we present a more detailed histological evaluation of PTHrP expression in these sites and study the effects of mechanical force on PTHrP expression in selected sites. We studied the periosteum and selected entheses by histological, histochemical, and in situ hybridization histochemical techniques, and tendons or ligaments were unloaded by tail suspension or surgical transection. In the periosteum, PTHrP is expressed in the fibrous layer and the type 1 PTH/PTHrP receptor (PTH1R) in the subjacent cambial layer. PTHrP has distinct temporospatial patterns of expression in the periosteum, one hot spot being the metaphyseal periosteum in growing animals. PTHrP is also strongly expressed in a number of fibrous insertion sites. In the tibia these include the insertions of the medial collateral ligament (MCL) and the semimembranosus (SM). In young animals, the MCL and SM sites display a combination of underlying osteoblastic and osteoclastic activities that may be associated with the migration of these entheses during linear growth. Unloading the MCL and SM by tail suspension or surgical transection leads to a marked decrease in PTHrP/lacZ expression and a rapid disappearance of the subjacent osteoblastic population. We have not been able to identify PTHrP-lacZ in any internal bone cell population in the PTHrP-lacZ knockin mouse in either a CD-1 or C57Bl/6 genetic background. In conclusion, we have identified PTHrP expression in surface structures that connect skeletal elements to each other and to surrounding muscle but not in intrinsic internal bone cell populations. In these surface sites, mechanical force seems to be an important regulator of PTHrP expression. In selected sites and/or at specific times, PTHrP may influence the recruitment and/or activities of underlying bone cell populations.

摘要

在PTHrP-lacZ基因敲入报告小鼠中,甲状旁腺激素相关蛋白(PTHrP)基因在骨膜以及肌腱和韧带附着部位表达。在此,我们对这些部位PTHrP的表达进行了更详细的组织学评估,并研究了机械力对选定部位PTHrP表达的影响。我们通过组织学、组织化学和原位杂交组织化学技术研究了骨膜和选定的附着点,通过尾部悬吊或手术横断使肌腱或韧带失负荷。在骨膜中,PTHrP在纤维层表达,而1型甲状旁腺激素/甲状旁腺激素相关蛋白受体(PTH1R)在其下方的形成层表达。PTHrP在骨膜中有独特的时空表达模式,其中一个热点是生长动物的干骺端骨膜。PTHrP在一些纤维附着部位也强烈表达。在胫骨中,这些部位包括内侧副韧带(MCL)和半膜肌(SM)的附着点。在幼龄动物中,MCL和SM部位显示出潜在的成骨细胞和成骨细胞活性的组合,这可能与这些附着点在纵向生长过程中的迁移有关。通过尾部悬吊或手术横断使MCL和SM失负荷会导致PTHrP/lacZ表达显著降低,其下方的成骨细胞群体迅速消失。在CD-1或C57Bl/6遗传背景的PTHrP-lacZ基因敲入小鼠中,我们未能在任何内部骨细胞群体中鉴定出PTHrP-lacZ。总之,我们已经确定PTHrP在将骨骼元素相互连接以及与周围肌肉连接的表面结构中表达,但在内在的内部骨细胞群体中不表达。在这些表面部位,机械力似乎是PTHrP表达的重要调节因子。在选定的部位和/或特定时间点,PTHrP可能会影响其下方骨细胞群体的募集和/或活性。

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