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Different Frequency of Cyclic Tensile Strain Relates to Anabolic/Catabolic Conditions Consistent with Immunohistochemical Staining Intensity in Tenocytes

机译:循环拉伸应变的不同频率与肌腱细胞的免疫组织化学染色强度一致的合成代谢/代谢条件有关

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摘要

Tenocytes are mechanosensitive cells intimately adapting their expression profile and hence, their phenotype to their respective mechanomilieu. The immunolocalization and expression intensity of tenogenic, anabolic and catabolic markers in tenocytes in response to in vitro mechanical loading have not been monitored by immunohistochemical staining (IHC). Thus, we investigated the association between IHC intensities, different stimulation frequencies, and tenogenic metabolism using a versatile mechanical stretcher. Primary tenocytes obtained from murine Achilles tendons were transferred to poly(dimethylsiloxane) (PDMS) elastomeric chamber. Chambers were cyclically stretched by 5% in uniaxial direction at a variation of tensile frequency (1 or 2 Hz) for 3 h. After stretching, cell physiology, IHC intensities of tendon-related markers, and protein level of the angiogenesis marker vascular endothelial growth factor (VEGF) were evaluated. Cell proliferation in tenocytes stimulated with 1 Hz stretch was significantly higher than with 2 Hz or without stretch, while 2 Hz stretch induced significantly reduced cell viability and proliferation with microscopically detectable apoptotic cell changes. The amount of scleraxis translocated into the nuclei and tenomodulin immunoreactivity of tenocytes treated with stretch were significantly higher than of non-stretched cells. The collagen type-1 expression level in tenocytes stretched at 1 Hz was significantly higher than in those cultivated with 2 Hz or without stretching, whereas the matrix metalloproteinase (MMP)-1 and MMP-13 immunoreactivities of cells stretched at 2 Hz were significantly higher than in those stimulated with 1 Hz or without stretching. The secreted VEGF-protein level of tenocytes stretched at 2 Hz was significantly higher than without stretching. Our IHC findings consistent with cell physiology suggest that appropriate stretching can reproduce in vitro short-term tenogenic anabolic/catabolic conditions and allow us to identify an anabolic stretching profile.
机译:肌腱细胞是机械敏感的细胞,紧密地适应其表达谱,因此使其表型与其各自的机械机理有关。尚未通过免疫组织化学染色(IHC)监测肌腱细胞中肌腱蛋白,同化和分解代谢标志物的免疫定位和表达强度。因此,我们使用多功能机械担架调查了IHC强度,不同刺激频率和肌腱代谢之间的关联。从鼠足跟腱获得的原代肌腱细胞转移到聚二甲基硅氧烷(PDMS)弹性腔中。在拉伸频率(1或2 Hz)的变化下,将腔室在单轴方向上循环拉伸5%,持续3 h。拉伸后,评估细胞生理学,肌腱相关标志物的IHC强度以及血管生成标志物血管内皮生长因子(VEGF)的蛋白水平。 1 Hz拉伸刺激的肌腱细胞的细胞增殖明显高于2 Hz或不拉伸的刺激,而2 Hz拉伸诱导的细胞活力和增殖显着降低,可通过显微镜下检测到的凋亡细胞变化。经拉伸处理的肌腱细胞的巩膜易位量和Tenomodulin免疫反应性显着高于未拉伸的细胞。 1 Hz拉伸的肌腱细胞中胶原1型表达水平显着高于2 Hz或不拉伸的肌腱细胞,而2 Hz拉伸细胞的基质金属蛋白酶(MMP)-1和MMP-13免疫反应性显着更高比那些以1 Hz或没有拉伸刺激的人2 Hz拉伸的肌腱细胞分泌的VEGF蛋白水平显着高于未拉伸的肌腱。我们的IHC研究结果与细胞生理学相符,表明适当的拉伸可以在体外短期内产生异基因合成代谢/分解代谢条件,从而使我们能够识别合成代谢拉伸特性。

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