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Scleraxis is required for the development of a functional tendon enthesis

机译:巩膜是发展功能性腱鞘所必需的

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摘要

The attachment of dissimilar materials is a major engineering challenge, yet this challenge is seemingly overcome in biology. This study aimed to determine how the transcription factor Scleraxis (Scx) influences the development and maturation of the tendon-to-bone attachment (enthesis). Mice with conditional knockout (cKO) for Scx (Scxflx/−, Prx1Cre+) and wild-type [(WT) Scxflx/+ or Scxflx/flx] littermates were killed at postnatal days 7–56 (P7–P56). Enthesis morphometry, histology, and collagen alignment were investigated throughout postnatal growth. Enthesis tensile mechanical properties were also assessed. Laser microdissection of distinct musculoskeletal tissues was performed at P7 for WT, cKO, and muscle-unloaded (botulinum toxin A treated) attachments for quantitative PCR. cKO mice were smaller, with altered bone shape and impaired enthesis morphology, morphometry, and organization. Structural alterations led to altered mechanical properties; cKO entheses demonstrated reduced strength and stiffness. In P7 attachments, cKO mice had reduced expression of transforming growth factor (TGF) superfamily genes in fibrocartilage compared with WT mice. In conclusion, deletion of Scx led to impairments in enthesis structure, which translated into impaired functional (i.e., mechanical) outcomes. These changes may be driven by transient signaling cues from mechanical loading and growth factors.—Killian, M. L., Thomopoulos, S. Scleraxis is required for the development of a functional tendon enthesis.
机译:异种材料的连接是一项重大的工程挑战,但这一挑战似乎已在生物学中克服。这项研究旨在确定转录因子Scleraxis(Scx)如何影响肌腱-骨附着(发育)的发育和成熟。带有条件敲除(cKO)的Scx(Scx flx /-,Prx1Cre + )和野生型[(WT)Scx flx / + 的小鼠>或Scx flx / flx ]同窝仔在出生后7-56天(P7-P56)被杀死。在整个产后发育过程中,研究了其形态学,组织学和胶原蛋白排列。还评估了拉伸力学性能。在P7对WT,cKO和未加载肌肉(经肉毒杆菌毒素A处理)的附件进行不同的肌肉骨骼组织的激光显微切割,以进行定量PCR。 cKO小鼠较小,具有改变的骨骼形状和受损的形态,形态和组织。结构的改变导致机械性能的改变; cKO分子显示出降低的强度和刚度。在P7附件中,与WT小鼠相比,cKO小鼠的纤维软骨中转化生长因子(TGF)超家族基因的表达降低。总之,Scx的缺失会导致其结构的损伤,从而转化为功能(即机械)结果受损。这些变化可能是由来自机械负荷和生长因子的瞬时信号提示所驱动。-Killian,M. L.,Thomopoulos,S.巩膜是功能性腱鞘发展的必要条件。

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