The search for an optimal tissue-engineered urethra model for clinical application based on preclinical trials in male animals: A systematic review and meta-analysis

IF 6.1 2区 医学 Q1 ENGINEERING, BIOMEDICAL Bioengineering & Translational Medicine Pub Date : 2024-07-23 DOI:10.1002/btm2.10700
Natalia Chepelova, Guzel Sagitova, Daniel Munblit, Aleksandr Suvorov, Andrey Morozov, Anastasia Shpichka, Peter Glybochko, Peter Timashev, Denis Butnaru
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Abstract

Tissue engineering has emerged as a promising avenue for reconstructive urology, though only a limited number of tissue-engineered urethral constructs have advanced to clinical testing. Presently, there exists a dearth of agreement regarding the most promising constructs deserving of implementation in clinical practice. The objective of this review was to provide a comprehensive analysis of preclinical trials findings of a tissue-engineered urethra and to identify the most promising constructs for future translation into clinical practice. A systematic search of the Pubmed, Scopus, and PMC databases was conducted in accordance with the PRISMA statement. Manuscripts published in English between 2015 and 2022, reporting on the methodology for creating a tissue-engineered urethra, assessing the regenerative potential of the scaffold in a male animal model, and evaluating the clinical and histological outcomes of treatment, were included. A total of 48 manuscripts met the inclusion criteria, with 12 being eligible for meta-analysis. Meta-analysis revealed no significant benefit of any matrix type in terms of complication rates. However, acellular matrices demonstrated significant advantage over cellular matrices in case of no postoperative stricture formation (odds ratio = 0.06 [95% CI 0.01; 0.23], p < 0.01). Among all subgroups (animal models and scaffold types), the usage of acellular matrices resulted in advantageous effects. The meta-regression analysis did not show a significant impact of defect length (β1 = −0.02 [−0.28; 0.23], p = 0.86). We found that decellularized materials may carry less relevance for urethral reconstruction due to unfavorable preclinical outcomes. Natural polymers, used independently or with synthetic materials, resulted in better postoperative outcomes in animals compared to purely synthetic constructs. Acellular scaffolds showed promising outcomes, matching or exceeding cellular constructs. However, more studies are needed to confirm their clinical effectiveness.

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基于雄性动物的临床前试验,为临床应用寻找最佳组织工程尿道模型:系统回顾与荟萃分析
组织工程学已成为泌尿外科重建的一条前景广阔的途径,但只有少数组织工程尿道构建物已进入临床试验阶段。目前,关于最有希望应用于临床实践的构建物还缺乏一致意见。本综述的目的是对组织工程尿道的临床前试验结果进行全面分析,并确定最有希望在未来应用于临床实践的结构。根据 PRISMA 声明,对 Pubmed、Scopus 和 PMC 数据库进行了系统检索。纳入了 2015 年至 2022 年间发表的英文稿件,这些稿件报道了创建组织工程尿道的方法、评估支架在雄性动物模型中的再生潜力以及评估治疗的临床和组织学结果。共有 48 篇手稿符合纳入标准,其中 12 篇符合荟萃分析条件。荟萃分析表明,就并发症发生率而言,任何基质类型都没有明显的优势。不过,在术后不形成狭窄的情况下,无细胞基质比细胞基质有明显优势(几率比=0.06 [95% CI 0.01; 0.23],p <0.01)。在所有亚组(动物模型和支架类型)中,使用无细胞基质都会产生有利影响。元回归分析并未显示缺损长度的显著影响(β1 = -0.02 [-0.28; 0.23], p = 0.86)。我们发现,由于临床前研究结果不理想,脱细胞材料对尿道重建的意义可能较小。与纯合成材料相比,独立使用或与合成材料一起使用的天然聚合物可为动物带来更好的术后效果。细胞支架显示出良好的效果,可与细胞构建物媲美或超越细胞构建物。不过,还需要更多的研究来证实其临床效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioengineering & Translational Medicine
Bioengineering & Translational Medicine Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
8.40
自引率
4.10%
发文量
150
审稿时长
12 weeks
期刊介绍: Bioengineering & Translational Medicine, an official, peer-reviewed online open-access journal of the American Institute of Chemical Engineers (AIChE) and the Society for Biological Engineering (SBE), focuses on how chemical and biological engineering approaches drive innovative technologies and solutions that impact clinical practice and commercial healthcare products.
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