He M, Callanan A, Lagaras K, Steele J A M, Stevens M M
Department of Bioengineering, Imperial College London, London, UK.
Department of Materials and Institute of Biomedical Engineering, Imperial College London, London, UK.
J Biomed Mater Res B Appl Biomater. 2017 Aug;105(6):1352-1360. doi: 10.1002/jbm.b.33668. Epub 2016 Apr 8.
Renal transplantation is well established as the optimal form of renal replacement therapy but is restricted by the limited pool of organs available for transplantation. The whole organ decellularisation approach is leading the way for a regenerative medicine solution towards bioengineered organ replacements. However, systematic preoptimization of both decellularization and recellularization parameters is essential prior to any potential clinical application and should be the next stage in the evolution of whole organ decellularization as a potential strategy for bioengineered organ replacements. Here we have systematically assessed two fundamental parameters (concentration and duration of perfusion) with regards to the effects of differing exposure to the most commonly used single decellularizing agent (sodium dodecyl sulphate/SDS) in the perfusion decellularization process for whole rat kidney ECM bioscaffolds, with findings showing improved preservation of both structural and functional components of the whole kidney ECM bioscaffold. Whole kidney bioscaffolds based on our enhanced protocol were successfully recellularized with rat primary renal cells and mesenchymal stromal cells. These findings should be widely applicable to decellularized whole organ bioscaffolds and their optimization in the development of regenerated organ replacements for transplantation. © 2016 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 105B: 1352-1360, 2017.
肾移植已被公认为是肾脏替代治疗的最佳形式,但受到可用于移植的器官来源有限的限制。全器官去细胞化方法正引领着再生医学解决方案,朝着生物工程器官替代的方向发展。然而,在任何潜在的临床应用之前,对去细胞化和再细胞化参数进行系统的预优化至关重要,这应该是全器官去细胞化作为生物工程器官替代潜在策略发展的下一阶段。在此,我们系统地评估了两个基本参数(灌注浓度和持续时间),这两个参数涉及在大鼠全肾ECM生物支架的灌注去细胞化过程中,不同暴露于最常用的单一去细胞化剂(十二烷基硫酸钠/SDS)的影响,结果表明全肾ECM生物支架的结构和功能成分的保存得到了改善。基于我们改进方案的全肾生物支架成功地用大鼠原代肾细胞和间充质基质细胞进行了再细胞化。这些发现应广泛适用于去细胞化的全器官生物支架及其在开发用于移植的再生器官替代物中的优化。© 2016威利期刊公司。《生物医学材料研究杂志》B部分:应用生物材料,105B: 1352 - 1360,2017年。