Department of Biomedical Engineering, Tulane University, New Orleans, 70118, USA.
Department of Animal Sciences, Reproductive and Developmental Sciences Program, Michigan State University, East Lansing, 48824, USA.
Sci Rep. 2021 Oct 25;11(1):20956. doi: 10.1038/s41598-021-00351-1.
The vagina plays a critical role in supporting the pelvic organs and loss of support leads to pelvic organ prolapse. It is unknown what microstructural changes influence prolapse progression nor how decreased elastic fibers contributes to vaginal remodeling and smooth muscle contractility. The objective for this study was to evaluate the effect of fibulin-5 haploinsufficiency, and deficiency with progressive prolapse on the biaxial contractile and biomechanical function of the murine vagina. Vaginas from wildtype (n = 13), haploinsufficient (n = 13), and deficient mice with grade 1 (n = 9) and grade 2 or 3 (n = 9) prolapse were explanted for biaxial contractile and biomechanical testing. Multiaxial histology (n = 3/group) evaluated elastic and collagen fiber microstructure. Western blotting quantified protein expression (n = 6/group). A one-way ANOVA or Kruskal-Wallis test evaluated statistical significance. Pearson's or Spearman's test determined correlations with prolapse grade. Axial contractility decreased with fibulin-5 deficiency and POP (p < 0.001), negatively correlated with prolapse grade (ρ = - 0.80; p < 0.001), and positively correlated with muscularis elastin area fraction (ρ = - 0.78; p = 0.004). Circumferential (ρ = 0.71; p < 0.001) and axial (ρ = 0.69; p < 0.001) vaginal wall stresses positively correlated with prolapse grade. These findings demonstrated that fibulin-5 deficiency and prolapse progression decreased vaginal contractility and increased vaginal wall stress. Future work is needed to better understand the processes that contribute to prolapse progression in order to guide diagnostic, preventative, and treatment strategies.
阴道在支撑盆腔器官方面起着至关重要的作用,支撑的丧失会导致盆腔器官脱垂。目前尚不清楚哪些微观结构的变化会影响脱垂的进展,也不清楚弹性纤维的减少如何导致阴道重塑和平滑肌收缩力的改变。本研究的目的是评估纤维连接蛋白-5单倍剂量不足以及渐进性脱垂对小鼠阴道双轴收缩和生物力学功能的影响。从野生型(n = 13)、单倍剂量不足(n = 13)和脱垂 1 级(n = 9)和 2 级或 3 级(n = 9)的缺陷小鼠中取出阴道进行双轴收缩和生物力学测试。多轴组织学(n = 3/组)评估弹性和胶原纤维微观结构。通过 Western blot 定量蛋白质表达(n = 6/组)。采用单因素方差分析或 Kruskal-Wallis 检验评估统计学意义。Pearson 或 Spearman 检验确定与脱垂等级的相关性。随着纤维连接蛋白-5的缺乏和 POP 的发生,轴向收缩力降低(p < 0.001),与脱垂等级呈负相关(ρ = -0.80;p < 0.001),与肌肉弹力蛋白面积分数呈正相关(ρ = -0.78;p = 0.004)。环形(ρ = 0.71;p < 0.001)和轴向(ρ = 0.69;p < 0.001)阴道壁应力与脱垂等级呈正相关。这些发现表明,纤维连接蛋白-5缺乏和脱垂进展降低了阴道收缩力并增加了阴道壁应力。需要进一步的研究来更好地了解导致脱垂进展的过程,以便为诊断、预防和治疗策略提供指导。