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首页> 外文期刊>Transplantation Proceedings >Morphological and urodynamic evaluation of urinary bladder wall regeneration: Muscles guarantee contraction but not proper function - A rat model research study
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Morphological and urodynamic evaluation of urinary bladder wall regeneration: Muscles guarantee contraction but not proper function - A rat model research study

机译:膀胱壁再生的形态学和尿动力学评估:肌肉保证收缩但功能不正常-大鼠模型研究

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Background. Numerous studies are ungoing to develop a substitute for the native urinary bladder wall. The principals of tissue engineering approaches to urinary bladder wall augmentation require a favorable environment for smooth muscle regeneration, which is crucial for bladder function. This study was performed to evaluate bone marrow mesenchymal stem cells (BMSC) seeded on to amniotic membranes fixed to Tachosil sponges as grafts for urinary bladder muscle layer augmentation in a syngenic rat model. Materials and methods. Amniotic membranes seeded with BMSC and covered by Tachosil sponges were implanted as multilayer grafts into nine rats to regenerate the urinary bladder wall. The control group consisted of 12 healthy rats. Urodynamic examinations included contraction, elasticity, compliance, and urinary bladder motor activity. Hematocylin and eosin and Masson's trichrome stains were used to evaluate muscle regeneration; histological data were digitally analyzed with the ImageJ tool. Results. The area of muscle bundles ranged from 5% to 25% or 32% to 41% in control versus reconstructed bladders, respectively. Among nine animals with reconstructed urinary bladders, urodynamic evaluation revealed bladder motor hyperactivity with regular (n = 4) or irregular (n = 1) storage and voiding phases, as well as proper bladder motor activity with a large bladder capacity (n = 1). No bladder contractility was recorded in one case and large stones developed in two animals, which made functional studies impossible. Conclusions. Regenerated smooth muscle cells created an autonomic cell population that was poorly assimilated to the rest of the urinary bladder wall. The histological presence of a regenerated muscle layer did not guarantee proper urinary bladder function.
机译:背景。正在进行大量研究以开发出天然膀胱壁的替代品。膀胱壁增厚的组织工程学原理要求为平滑肌再生提供良好的环境,这对膀胱功能至关重要。进行这项研究是为了评估同种异体大鼠模型中,骨髓间充质干细胞(BMSC)植入到固定在Tachosil海绵上的羊膜上作为移植物,以增加膀胱肌肉层。材料和方法。将植入BMSC并被Tachosil海绵覆盖的羊膜作为多层移植物植入9只大鼠中,以再生膀胱壁。对照组由12只健康大鼠组成。尿动力学检查包括收缩,弹性,顺应性和膀胱运动活动。用苏木精和曙红和马森三色染色剂评估肌肉再生。使用ImageJ工具对组织学数据进行数字分析。结果。与重建膀胱相比,对照组的肌肉束面积分别为5%至25%或32%至41%。在9例膀胱重构的动物中,尿动力学评估显示正常(n = 4)或不规则(n = 1)储存和排尿阶段的膀胱运动亢进,以及大膀胱容量(n = 1)的正常膀胱运动。在一个案例中没有记录到膀胱收缩力,在两只动物中出现了大结石,这使得功能研究变得不可能。结论。再生的平滑肌细胞产生了自主神经细胞群,与其他膀胱壁的吸收能力差。再生肌肉层的组织学存在不能保证正常的膀胱功能。

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