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靶向敲除肌腱中的 Fgf9 会破坏发育中的附关节的矿化。

Targeted deletion of Fgf9 in tendon disrupts mineralization of the developing enthesis.

机构信息

Department of Orthopaedic Surgery, Michigan Medicine, Michigan, Ann Arbor, USA.

Department of Mechanical Engineering, University of Delaware, Delaware, Newark, USA.

出版信息

FASEB J. 2023 Mar;37(3):e22777. doi: 10.1096/fj.202201614R.

Abstract

The enthesis is a transitional tissue between tendon and bone that matures postnatally. The development and maturation of the enthesis involve cellular processes likened to an arrested growth plate. In this study, we explored the role of fibroblast growth factor 9 (Fgf9), a known regulator of chondrogenesis and vascularization during bone development, on the structure and function of the postnatal enthesis. First, we confirmed spatial expression of Fgf9 in the tendon and enthesis using in situ hybridization. We then used Cre-lox recombinase to conditionally knockout Fgf9 in mouse tendon and enthesis (Scx-Cre) and characterized enthesis morphology as well as mechanical properties in Fgf9 and wild-type (WT) entheses. Fgf9 mice had smaller calcaneal and humeral apophyses, thinner cortical bone at the attachment, increased cellularity, and reduced failure load in mature entheses compared to WT littermates. During postnatal development, we found reduced chondrocyte hypertrophy and disrupted type X collagen (Col X) in Fgf9 entheses. These findings support that tendon-derived Fgf9 is important for functional development of the enthesis, including its postnatal mineralization. Our findings suggest the potential role of FGF signaling during enthesis development.

摘要

腱骨结合部是一种腱和骨之间的过渡组织,在出生后成熟。腱骨结合部的发育和成熟涉及到类似于生长板停滞的细胞过程。在这项研究中,我们探讨了成纤维细胞生长因子 9(Fgf9)在出生后腱骨结合部结构和功能中的作用,Fgf9 是骨发育过程中已知的软骨形成和血管生成的调节剂。首先,我们使用原位杂交技术证实了 Fgf9 在肌腱和腱骨结合部的空间表达。然后,我们使用 Cre-lox 重组酶在小鼠肌腱和腱骨结合部(Scx-Cre)中条件性敲除 Fgf9,并对 Fgf9 和野生型(WT)腱骨结合部的形态和力学特性进行了特征分析。与 WT 同窝仔相比,Fgf9 小鼠的跟骨和肱骨附丽处较小,附着处皮质骨较薄,细胞数量增加,成熟腱骨结合部的失效负荷降低。在出生后发育过程中,我们发现 Fgf9 腱骨结合部的软骨细胞肥大减少,Col X 破坏。这些发现支持了来自肌腱的 Fgf9 对腱骨结合部的功能发育,包括其出生后的矿化过程很重要。我们的研究结果提示了 FGF 信号在腱骨结合部发育过程中的潜在作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ca2/10108073/73de91f4cff5/FSB2-37-0-g002.jpg

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