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Skeletal nutrient vascular adaptation induced by external oscillatory intramedullary fluid pressure intervention

机译:外部振荡性髓内液压干预引起的骨骼营养血管适应

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Background Interstitial fluid flow induced by loading has demonstrated to be an important mediator for regulating bone mass and morphology. It is shown that the fluid movement generated by the intramedullary pressure (ImP) provides a source for pressure gradient in bone. Such dynamic ImP may alter the blood flow within nutrient vessel adjacent to bone and directly connected to the marrow cavity, further initiating nutrient vessel adaptation. It is hypothesized that oscillatory ImP can mediate the blood flow in the skeletal nutrient vessels and trigger vasculature remodeling. The objective of this study was then to evaluate the vasculature remodeling induced by dynamic ImP stimulation as a function of ImP frequency. Methods Using an avian model, dynamics physiological fluid ImP (70 mmHg, peak-peak) was applied in the marrow cavity of the left ulna at either 3 Hz or 30 Hz, 10 minutes/day, 5 days/week for 3 or 4 weeks. The histomorphometric measurements of the principal nutrient arteries were done to quantify the arterial wall area, lumen area, wall thickness, and smooth muscle cell layer numbers for comparison. Results The preliminary results indicated that the acute cyclic ImP stimuli can significantly enlarge the nutrient arterial wall area up to 50%, wall thickness up to 20%, and smooth muscle cell layer numbers up to 37%. In addition, 3-week of acute stimulation was sufficient to alter the arterial structural properties, i.e., increase of arterial wall area, whereas 4-week of loading showed only minimal changes regardless of the loading frequency. Conclusions These data indicate a potential mechanism in the interrelationship between vasculature adaptation and applied ImP alteration. Acute ImP could possibly initiate the remodeling in the bone nutrient vasculature, which may ultimately alter blood supply to bone.
机译:背景技术由负荷引起的间质液流动已证明是调节骨量和形态的重要介质。结果表明,由髓内压(ImP)产生的流体运动为骨中的压力梯度提供了来源。这种动态的ImP可能会改变与骨骼相邻并直接连接至骨髓腔的营养血管内的血流,从而进一步启动营养血管的适应性。假设振荡的ImP可以介导骨骼营养血管中的血流并触发脉管系统重塑。然后,本研究的目的是评估由动态ImP刺激引起的脉管系统重构与ImP频率的关系。方法使用禽类模型,以3 Hz或30 Hz的速度将动态生理液ImP(70 mmHg,峰-峰值)施加于左尺骨的骨髓腔中,每天10分钟/天,5天/周,持续3或4周。对主要营养动脉进行了组织形态计量学测量,以量化动脉壁面积,管腔面积,壁厚和平滑肌细胞层数以进行比较。结果初步结果表明,急性循环ImP刺激可显着扩大营养动脉壁面积达50%,壁厚达20%,平滑肌细胞层数达37%。此外,3周的急性刺激足以改变动脉的结构特性,即增加动脉壁的面积,而4周的负荷无论负荷频率如何,其变化都很小。结论这些数据表明了脉管系统适应与应用的ImP改变之间相互关系的潜在机制。急性ImP可能会启动骨骼营养血管的重塑,最终可能改变骨骼的血液供应。

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