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Muscle loading is necessary for the formation of a functional tendon enthesis

机译:肌肉负荷是功能性腱鞘形成的必要条件

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摘要

Muscle forces are essential for skeletal patterning during development. Eliminating muscle forces, e.g., through paralysis, leads to bone and joint deformities. Botulinum toxin (BtxA)-induced paralysis of mouse rotator cuffs throughout postnatal development closely mimics neonatal brachial plexus palsy, a significant clinical condition in infants. In these mice, the tendon-to-bone attachment (i.e., the tendon enthesis) presents defects in mineral accumulation and fibrocartilage formation, presumably impairing the function of the tissue. The objective of the current study was to investigate the functional consequences of muscle unloading using BtxA on the developing supraspinatus tendon enthesis. We found that the maximum endurable load and stiffness of the supraspinatus tendon attachment decreased after four and eight weeks of post-natal BtxA-muscle unloading relative to controls. Tendon cross-sectional area was not significantly reduced by BtxA-unloading, while, strength, modulus, and toughness were decreased in the BtxA-unloaded group compared to controls, indicating a decrease in tissue quality. Polarized-light microscopy and Raman microprobe analysis were used to determine collagen fiber alignment and mineral characteristics, respectively, in the tendon enthesis that might contribute to the reduced biomechanical performance in BtxA-unloaded shoulders. Collagen fiber alignment was significantly reduced in BtxA-unloaded shoulders. The mineral-to-matrix ratio in mineralized fibrocartilage was not affected by loading. However, the crystallographic atomic order of the hydroxylapatite phase (a measure of crystallinity) was reduced and the amount of carbonate (substituting for phosphate) in the hydroxylapatite crystals was increased. Taken together, these micrometer-scale structural and compositional changes partly explain the observed decreases in the mechanical functionality of the tendon enthesis in the absence of muscle loading.
机译:肌肉力量对于发育过程中的骨骼构图至关重要。消除肌肉力量,例如通过瘫痪,会导致骨骼和关节畸形。肉毒杆菌毒素(BtxA)引起的整个出生后小鼠肩袖麻痹均与新生儿臂丛神经麻痹密切相似,这是婴儿的重要临床症状。在这些小鼠中,肌腱与骨骼的附着(即肌腱的形成)在矿物质积聚和纤维软骨形成方面表现出缺陷,可能损害了组织的功能。本研究的目的是研究使用BtxA进行肌肉卸载对发展中的棘上肌腱的功能性影响。我们发现,出生后BtxA肌肉卸载相对于对照组,在四,八周后,腕上肌腱附着的最大耐久力和刚度降低。 BtxA卸载组的肌腱截面积并未显着减少,而BtxA卸载组的肌腱横截面面积的强度,模量和韧性均低于对照组,表明组织质量下降。偏光显微镜和拉曼显微探针分析分别用于确定腱鞘中胶原纤维的排列和矿物质特征,这可能有助于降低BtxA负重肩膀的生物力学性能。卸载BtxA的肩膀中胶原纤维的排列明显减少。矿化纤维软骨中的矿物质与基质的比例不受载荷的影响。然而,羟基磷灰石相的晶体学原子序(结晶度的量度)降低,并且羟基磷灰石晶体中碳酸盐(代替磷酸盐)的量增加。总之,这些微米级的结构和组成变化部分地解释了在没有肌肉负荷的情况下观察到的腱鞘机械功能的下降。

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