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弹性蛋白在前瓣叶在猪三尖瓣机械性能中的作用。

The role of elastin on the mechanical properties of the anterior leaflet in porcine tricuspid valves.

机构信息

Department of Bioengineering, Northeastern University, Boston, MA, United States of America.

Department of Biomedical Engineering, The University of Akron, Akron, OH, United States of America.

出版信息

PLoS One. 2022 May 13;17(5):e0267131. doi: 10.1371/journal.pone.0267131. eCollection 2022.

Abstract

Elastin is present in the extracellular matrix (ECM) of connective tissues, and its mechanical properties are well documented. In Marfan syndrome, however, the inability to properly code for the protein fibrillin-1 prematurely leads to the degradation and loss of elastin fiber integrity in the ECM. In this study, the role of elastin in the ECM of the anterior leaflet of the tricuspid valve was investigated by examining the biomechanical behavior of porcine leaflets before and after the application of the enzyme elastase. Five loading protocols were applied to the leaflet specimens in two groups (elastase-treated and control samples). The mechanical response following elastase application yielded a significantly stiffer material in both the radial and circumferential directions. At a physiological level of stress (85 kPa), the elastase group had an average strain of 26.21% and 6.32% in the radial and circumferential directions, respectively, at baseline prior to elastase application. Following elastase treatment, the average strain was 5.28% and 0.97% in the radial and circumferential directions, respectively. No statistically significant change was found in the control group following sham treatment with phosphate-buffered saline (PBS). Two-photon microscopy images confirmed that after the removal of elastin, the collagen fibers displayed a loss of undulation. With a significant reduction in radial compliance, the ability to withstand physiological loads may be compromised. As such, an extracellular matrix that is structurally deficient in elastin may hinder normal tricuspid valve function.

摘要

弹性蛋白存在于结缔组织的细胞外基质 (ECM) 中,其力学性能已有充分的记录。然而,在马凡综合征中,纤维连接蛋白-1 的编码能力异常,导致 ECM 中的弹性纤维完整性降解和丧失。在这项研究中,通过检查弹性酶应用前后猪瓣叶的生物力学行为,研究了弹性蛋白在三尖瓣前瓣叶 ECM 中的作用。将五种加载方案应用于两组(弹性酶处理和对照样本)的瓣叶标本。弹性酶应用后的力学响应在径向和周向方向都产生了明显更硬的材料。在生理水平的应力(85 kPa)下,弹性酶组在基线时(在应用弹性酶之前)径向和周向的平均应变为 26.21%和 6.32%。在弹性酶处理后,径向和周向的平均应变分别为 5.28%和 0.97%。在使用磷酸盐缓冲盐水 (PBS) 进行假处理后,对照组没有发现统计学上的显著变化。双光子显微镜图像证实,在去除弹性蛋白后,胶原纤维显示出波动的丧失。由于径向顺应性显著降低,可能会影响对生理负荷的承受能力。因此,缺乏弹性蛋白的细胞外基质可能会阻碍三尖瓣的正常功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9bc/9106221/7ff363230f0f/pone.0267131.g001.jpg

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