Faculty of Veterinary and Experimental Sciences, Universidad Católica de Valencia San Vicente Mártir, 46001 Valencia, Spain.
Department of Urology, La Fe University and Polytechnic Hospital and Health Research Institute, Hospital La Fe, 46026 Valencia, Spain.
Int J Mol Sci. 2018 Jun 17;19(6):1796. doi: 10.3390/ijms19061796.
Current clinical strategies for bladder reconstruction or substitution are associated to serious problems. Therefore, new alternative approaches are becoming more and more necessary. The purpose of this work is to review the state of the art of the current bioengineering advances and obstacles reported in bladder regeneration. Tissue bladder engineering requires an ideal engineered bladder scaffold composed of a biocompatible material suitable to sustain the mechanical forces necessary for bladder filling and emptying. In addition, an engineered bladder needs to reconstruct a compliant muscular wall and a highly specialized urothelium, well-orchestrated under control of autonomic and sensory innervations. Bioreactors play a very important role allowing cell growth and specialization into a tissue-engineered vascular construct within a physiological environment. Bioprinting technology is rapidly progressing, achieving the generation of custom-made structural supports using an increasing number of different polymers as ink with a high capacity of reproducibility. Although many promising results have been achieved, few of them have been tested with clinical success. This lack of satisfactory applications is a good reason to discourage researchers in this field and explains, somehow, the limited high-impact scientific production in this area during the last decade, emphasizing that still much more progress is required before bioengineered bladders become a commonplace in the clinical setting.
目前用于膀胱重建或替代的临床策略存在严重问题。因此,新的替代方法变得越来越必要。这项工作的目的是综述膀胱再生方面报告的当前生物工程进展和障碍的最新情况。组织膀胱工程需要一种理想的工程化膀胱支架,由适合承受膀胱充盈和排空所需的机械力的生物相容性材料组成。此外,工程化膀胱需要重建顺应性肌肉壁和高度特化的尿路上皮,在自主和感觉神经支配的控制下协调良好。生物反应器在允许细胞生长和专门化为组织工程血管构建体的过程中发挥着非常重要的作用,在生理环境中。生物打印技术发展迅速,使用越来越多的不同聚合物作为墨水,具有很高的可重复性,实现了定制结构支架的生成。尽管已经取得了许多有前途的成果,但其中很少有在临床上取得成功的。这种缺乏令人满意的应用的情况是令该领域研究人员感到沮丧的一个很好的原因,并且在某种程度上解释了过去十年中该领域高影响力科学研究成果有限的原因,强调在生物工程膀胱成为临床常规之前,还需要取得更多的进展。