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首页> 外文期刊>Annals of Biomedical Engineering: The Journal of the Biomedical Engineering Society >Collagen fiber re-alignment in a neonatal developmental mouse supraspinatus tendon model.
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Collagen fiber re-alignment in a neonatal developmental mouse supraspinatus tendon model.

机译:新生发育小鼠滑上肌腱模型中的胶原纤维重新排列。

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摘要

Collagen fiber re-alignment is one postulated mechanism of tendon structural response to load. While collagen fiber distribution has been shown to vary by tendon location in the supraspinatus tendon (SST), changes in local re-alignment behavior have not been examined throughout postnatal development. Postnatal tendons, with immature collagen fibrils, may respond to load in a much different manner than collagen fibers with mature fiber-fiber and fiber-matrix connections. Local collagen fiber re-alignment is quantified throughout tensile mechanical testing in a developmental mouse SST model and corresponding mechanical properties measured. Collagen fiber re-alignment occurred during preconditioning for 28 day old tendons, at the toe-region for 10 day tendons and at the linear-region for 4 day tendon midsubstance. Mechanical properties increased with developmental age. Linear modulus was lower at the insertion site compared to the midsubstance location at all time points. Local differences in collagen fiber distributions were found at 10 and 28 days for all mechanical testing points (except the 10 day transition point). This study found that collagen fiber re-alignment depends on developmental age and suggests that collagen fibrillogenesis may influence the tendon's ability to structurally respond to load. Additionally, results indicate that the insertion site and tendon midsubstance locations develop differently.
机译:胶原纤维重新排列是肌腱结构对负荷反应的一种假定机制。虽然已经显示出胶原纤维的分布随棘上肌腱(SST)中肌腱位置的变化而变化,但尚未在整个产后发育过程中检查局部重排行为的变化。带有未成熟胶原纤维的产后肌腱与具有成熟纤维-纤维和纤维-基质连接的胶原纤维的反应方式可能大不相同。在发育的小鼠SST模型中,通过拉伸机械测试对局部胶原纤维的重新排列进行量化,并测量相应的机械性能。胶原纤维重新排列在预处理28天大的肌腱过程中发生,在趾部区域发生10天的肌腱,在线性区域发生4天发生的肌腱中质。力学性能随着年龄的增长而增加。在所有时间点,插入位置处的线性模量均低于中间物质位置。对于所有机械测试点(10天过渡点除外),在10天和28天时发现胶原纤维分布存在局部差异。这项研究发现胶原纤维的重新排列取决于发育年龄,并暗示胶原纤维形成可能会影响肌腱对负荷的结构反应能力。此外,结果表明,插入部位和肌腱中部部位发育不同。

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