Peloso Andrea, Katari Ravi, Murphy Sean V, Zambon Joao P, DeFrancesco Anna, Farney Alan C, Rogers Jeffrey, Stratta Robert J, Manzia Tommaso M, Orlando Giuseppe
Wake Forest School of Medicine , Winston-Salem, NC , USA.
Expert Opin Biol Ther. 2015 Apr;15(4):547-58. doi: 10.1517/14712598.2015.993376. Epub 2015 Feb 1.
Dialysis and renal transplantation are the only two therapeutic options offered to patients affected by end-stage kidney disease; however, neither treatment can be considered definitive. In fact, dialysis is able to replace only the filtration function of the kidney without substituting its endocrine and metabolic roles, and dramatically impacts on patient's quality of life. On the other hand, kidney transplantation is severely limited by the shortage of transplantable organs, the need for immunosuppressive therapies and a narrow half-life. Regenerative medicine approaches are promising tools aiming to improve this condition.
Cell therapies, bioartificial kidney, organ bioengineering, 3D printer and kidney-on-chip represent the most appealing areas of research for the treatment of end-stage kidney failure. The scope of this review is to summarize the state of the art, limits and directions of each branch.
In the future, these emerging technologies could provide definitive, curative and theoretically infinite options for the treatment of end-stage kidney disease. Progress in stem cells-based therapies, decellularization techniques and the more recent scientific know-how for the use of the 3D printer and kidney-on-chip could lead to a perfect cellular-based therapy, the futuristic creation of a bioengineered kidney in the lab or to a valid bioartificial alternative.
透析和肾移植是为终末期肾病患者提供的仅有的两种治疗选择;然而,这两种治疗都不能被视为终极治疗方法。事实上,透析仅能替代肾脏的过滤功能,而无法替代其内分泌和代谢功能,并且会对患者的生活质量产生重大影响。另一方面,肾移植受到可移植器官短缺、免疫抑制疗法需求以及狭窄的半衰期的严重限制。再生医学方法是有望改善这种状况的工具。
细胞疗法、生物人工肾、器官生物工程、3D打印机和芯片肾代表了治疗终末期肾衰竭最具吸引力的研究领域。本综述的范围是总结每个分支的现状、局限性和发展方向。
未来,这些新兴技术可为终末期肾病的治疗提供终极、治愈性且理论上无限的选择。基于干细胞的疗法进展、脱细胞技术以及使用3D打印机和芯片肾的最新科学知识可能会带来完美的基于细胞的疗法、在实验室中创造未来派的生物工程肾或有效的生物人工替代物。