文章摘要
虞 琪,丁匀浚毓,高赛楠,姚 微,叶 霖.Dystrophin、MGF及M-Cad在难产大鼠模型盆底肌肉中的表达意义研究[J].,2022,(13):2436-2440
Dystrophin、MGF及M-Cad在难产大鼠模型盆底肌肉中的表达意义研究
Expression of Dystrophin, MGF and M-Cad in Pelvic Floor Muscles of Dystocia Rat Model and Its Significance
投稿时间:2022-01-08  修订日期:2022-01-30
DOI:10.13241/j.cnki.pmb.2022.13.007
中文关键词: 难产性大鼠  盆底肌肉  压力性尿失禁  肌养蛋白  力生长因子  M型钙调蛋白
英文关键词: Dystocia rats  Pelvic floor muscles  Stress urinary incontinence  Dystrophin  Mechano-growth factor  M-Cad
基金项目:江苏省妇幼健康科研项目(F201929)
作者单位E-mail
虞 琪 南通大学附属第二医院妇产科 江苏 南通 226000 yu1092825531@163.com 
丁匀浚毓 南通大学附属第二医院妇产科 江苏 南通 226000  
高赛楠 南通大学附属第二医院妇产科 江苏 南通 226000  
姚 微 南通大学附属第二医院妇产科 江苏 南通 226000  
叶 霖 南通大学附属第二医院妇产科 江苏 南通 226000  
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中文摘要:
      摘要 目的:研究模拟难产大鼠模型盆底肌肉中Dystrophin、MGF及M-Cad的表达,并探讨其表达与压力性尿失禁的相关性。方法:选择未生产过的雌性SD大鼠40只,按照随机数字表法均分为对照组、模型1组、模型2组和模型3组,对照组大鼠正常喂养,模型1组大鼠行阴道扩张手术,模型2组大鼠切除双侧坐骨神经,模型3组大鼠既行阴道扩张术又切除双侧坐骨神经。喂养1月后,称重后处死各组大鼠,并分离盆底肌肉,称重后通过定量PCR法(qPCR)检测Dystrophin、MGF及M-Cad mRNA的表达。结果:与对照组大鼠相比,难产大鼠模型组(模型1组、模型2组和模型3组)体重和盆底肌肉重量无显著变化(P>0.05),漏尿点压力和最大膀胱容量均显著下降(P<0.05),盆底肌肉Dystrophin、MGF及M-Cad mRNA表达均显著下降(P<0.05)。Pearson相关性分析:大鼠盆底肌肉Dystrophin、MGF及M-Cad mRNA表达水平与漏尿点压力均呈密切正相关(Dystrophin:r=0.725,P=0.002;MGF:r=0.702,P=0.018;M-Cad:r=0.838,P<0.001);鼠盆底肌肉Dystrophin、MGF及M-Cad mRNA表达水平与最大膀胱容量也均呈密切正相关(Dystrophin:r=0.733,P=0.001;MGF:r=0.682,P=0.025;M-Cad:r=0.819,P<0.001)。结论:模拟难产大鼠模型盆底肌肉Dystrophin、MGF及M-Cad的表达降低,并且提示其表达降低可能与压力性尿失禁有关。
英文摘要:
      ABSTRACT Objective: To study the expression of Dystrophin, MGF and M-Cad in pelvic floor muscles of dystocia rat model, and to explore its relationship with stress urinary incontinence. Methods: Forty unborn female SD rats were selected and divided into 3 groups according to the random number table method: control group, model 1 group, model 2 group and model 3 group. The rats in the control group were fed normally, the rats in the model 1 group underwent guided dilatation surgery, the rats in the model 2 group had bilateral sciatic nerves removed, and the rats in the model 3 group underwent both vaginal dilation and bilateral sciatic nerve removal. After feeding for 1 month, the rats in each group were sacrificed after weighing, and the pelvic floor muscles were separated. After weighing, the expression of Dystrophin, MGF and M-Cad mRNA was detected by quantitative PCR (qPCR). Results: Compared with the control group, the body weight and pelvic floor muscle weight of the dystocia rat model group (model 1, model 2 and model 3) did not change significantly (P>0.05), and the leakage point pressure and maximum bladder volume were both significantly decreased(P<0.05), and the expression of Dystrophin, MGF and M-Cad mRNA in pelvic floor muscles were also both significantly decreased (P<0.05). Pearson correlation analysis: the expression levels of Dystrophin, MGF and M-Cad mRNA in the pelvic floor muscles of rats are closely related to the pressure of the leak point (Dystrophin: r=0.725, P=0.002; MGF: r=0.702, P=0.018 ; M-Cad: r=0.838, P<0.001); the expression levels of Dystrophin, MGF and M-Cad mRNA in rat pelvic floor muscles are also closely correlated with maximum bladder capacity (Dystrophin: r=0.733, P=0.001; MGF: R=0.682, P=0.025; M-Cad: r=0.819, P<0.001). Conclusion: The expression of Dystrophin, MGF and M-Cad in pelvic floor muscles of dystocia rat model decreased, and the decreased expression were thought to be related to stress urinary incontinence.
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