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首页> 外文期刊>American Journal of Physiology >Load-dependent extracellular matrix organization in atrioventricular heart valves: differences and similarities
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Load-dependent extracellular matrix organization in atrioventricular heart valves: differences and similarities

机译:房室心脏瓣膜中的负载依赖性细胞外基质组织:差异和相似性

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摘要

The extracellular matrix of the atrioventricular (AV) valves' leaflets has a key role in the ability of these valves to properly remodel in response to constantly varying physiological loads. While the loading on mitral and tricuspid valves is significantly different, no information is available on how collagen fibers change their orientation in response to these loads. This study delineates the effect of physiological loading on AV valves' leaflets microstructures using Second Harmonic Generation (SHG) microscopy. Fresh natural porcine tricuspid and mitral valves' leaflets (n = 12/valve type) were cut and prepared for the experiments. Histology and immunohistochemistry were performed to compare the microstructural differences between the valves. The specimens were imaged live during the relaxed, loading, and unloading phases using SHG microscopy. The images were analyzed with Fourier decomposition to mathematically seek changes in collagen fiber orientation. Despite the similarities in both AV valves as seen in the histology and immunohistochemistry data, the microstructural arrangement, especially the collagen fiber distribution and orientation in the stress-free condition, were found to be different. Uniaxial loading was dependent on the arrangement of the fibers in their relaxed mode, which led the fibers to reorient in-line with the load throughout the depth of the mitral leaflet but only to reorient in-line with the load in deeper layers of the tricuspid leaflet. Biaxial loading arranged the fibers in between the two principal axes of the stresses independently from their relaxed states. Unlike previous findings, this study concludes that the AV valves' three-dimensional extracellular fiber arrangement is significantly different in their stress-free and uniaxially loaded states; however, fiber rearrangement in response to the biaxial loading remains similar.
机译:房室(AV)阀的细胞外基质在这些阀响应于不断变化的生理载荷而被适当地重塑的能力中具有关键作用。虽然二尖瓣和三尖瓣瓣膜上的装载显着不同,但没有任何信息可以在胶原纤维如何响应这些负载而改变定向。本研究阐述了使用二次谐波产生(SHG)显微镜的生理负荷对AV阀的叶片微观结构的影响。切割新鲜天然猪三尖瓣和二尖瓣叶(n = 12 /瓣膜型)并为实验做好准备。进行组织学和免疫组织化学以比较阀之间的微观结构差异。使用SHG显微镜检查在放松,装载和卸载阶段期间,该样本的成像。通过傅里叶分解来分析图像以在数学上寻求胶原纤维取向的变化。尽管在组织学和免疫组织化学数据中看到的两种AV阀中的相似性,但发现微观结构布置,尤其是胶原纤维分布和在无应力条件下取向,不同。单轴负载依赖于纤维在其宽松模式中的布置,这将纤维导致纤维在额外的二尖瓣叶片的深处重新定位载荷,而是仅在三尖瓣的深层层内重新定位载荷传单。双轴装载在两个主要轴之间独立地从其放松的状态布置在两个主要轴之间。与以前的发现不同,这项研究得出结论,AV阀的三维细胞外纤维布置在无应力和单轴加载状态下显着不同;然而,抗纤维重排响应双轴载荷保持相似。

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