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弹性蛋白酶消化对小鼠阴道壁双轴力学响应的影响

Effects of Elastase Digestion on the Murine Vaginal Wall Biaxial Mechanical Response.

作者信息

Akintunde Akinjide R, Robison Kathryn M, Capone Daniel J, Desrosiers Laurephile, Knoepp Leise R, Miller Kristin S

机构信息

Department of Biomedical Engineering,Lindy Boggs Center Suite 500,Tulane University,New Orleans, LA 70118e-mail:

Mem. ASMEDepartment of Biomedical Engineering,Lindy Boggs Center Suite 500,Tulane University,New Orleans, LA 70118e-mail:

出版信息

J Biomech Eng. 2019 Feb 1;141(2):0210111-02101111. doi: 10.1115/1.4042014.

Abstract

Although the underlying mechanisms of pelvic organ prolapse (POP) remain unknown, disruption of elastic fiber metabolism within the vaginal wall extracellular matrix (ECM) has been highly implicated. It has been hypothesized that elastic fiber fragmentation correlates to decreased structural integrity and increased risk of prolapse; however, the mechanisms by which elastic fiber damage may contribute to prolapse are poorly understood. Furthermore, the role of elastic fibers in normal vaginal wall mechanics has not been fully ascertained. Therefore, the objective of this study is to investigate the contribution of elastic fibers to murine vaginal wall mechanics. Vaginal tissue from C57BL/6 female mice was mechanically tested using biaxial extension-inflation protocols before and after intraluminal exposure to elastase. Elastase digestion induced marked changes in the vaginal geometry, and biaxial mechanical properties, suggesting that elastic fibers may play an important role in vaginal wall mechanical function. Additionally, a constitutive model that considered two diagonal families of collagen fibers with a slight preference toward the circumferential direction described the data reasonably well before and after digestion. The present findings may be important to determine the underlying structural and mechanical mechanisms of POP, and aid in the development of growth and remodeling models for improved assessment and prediction of changes in structure-function relationships with prolapse development.

摘要

尽管盆腔器官脱垂(POP)的潜在机制尚不清楚,但阴道壁细胞外基质(ECM)内弹性纤维代谢的破坏与之高度相关。据推测,弹性纤维断裂与结构完整性降低和脱垂风险增加相关;然而,弹性纤维损伤导致脱垂的机制尚不清楚。此外,弹性纤维在正常阴道壁力学中的作用尚未完全确定。因此,本研究的目的是探讨弹性纤维对小鼠阴道壁力学的作用。在管腔内暴露于弹性蛋白酶之前和之后,使用双轴拉伸-膨胀方案对C57BL/6雌性小鼠的阴道组织进行力学测试。弹性蛋白酶消化引起阴道几何形状和双轴力学性能的显著变化,表明弹性纤维可能在阴道壁力学功能中起重要作用。此外,一个考虑了两个对角胶原纤维家族且稍偏向圆周方向的本构模型在消化前后能较好地描述数据。本研究结果对于确定POP的潜在结构和力学机制可能很重要,并有助于开发生长和重塑模型,以更好地评估和预测脱垂发展过程中结构-功能关系的变化。

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