Department of Biomedical Engineering.
Institute for Complex Molecular Systems, Eindhoven University of Technology, Eindhoven, The Netherlands.
Curr Opin Organ Transplant. 2019 Oct;24(5):590-597. doi: 10.1097/MOT.0000000000000690.
For many disorders that result in loss of organ function, the only curative treatment is organ transplantation. However, this approach is severely limited by the shortage of donor organs. Tissue engineering has emerged as an alternative solution to this issue. This review discusses the concept of tissue engineering from a technical viewpoint and summarizes the state of the art as well as the current shortcomings, with the aim of identifying the key lessons that we can learn to further advance the engineering of functional tissues and organs.
A plethora of tissue-engineering strategies have been recently developed. Notably, these strategies put different emphases on the in-vitro and in-situ processes (i.e. preimplantation and postimplantation) that take place during tissue formation. Biophysical and biomechanical interactions between the cells and the scaffold/biomaterial play a crucial role in all steps and have started to be exploited to steer tissue regeneration.
Recent works have demonstrated the need to better understand the in-vitro and in-situ processes during tissue formation, in order to regenerate complex, functional organs with desired cellular organization and tissue architecture. A concerted effort from both fundamental and tissue-specific research has the potential to accelerate progress in the field.
对于许多导致器官功能丧失的疾病,唯一的根治方法是器官移植。然而,这种方法受到供体器官短缺的严重限制。组织工程已成为解决这一问题的一种替代方法。本文从技术角度讨论了组织工程的概念,并总结了该领域的最新进展和当前的不足之处,旨在确定我们可以吸取的关键经验教训,以进一步推进功能性组织和器官的工程。
最近已经开发了大量的组织工程策略。值得注意的是,这些策略对体外和体内过程(即植入前和植入后)在组织形成过程中所发生的过程有不同的侧重点。细胞与支架/生物材料之间的生物物理和生物力学相互作用在所有步骤中都起着至关重要的作用,并已开始被利用来引导组织再生。
最近的研究工作表明,需要更好地理解组织形成过程中的体外和体内过程,以便用所需的细胞组织和组织架构再生复杂的、功能性的器官。基础研究和组织特异性研究的共同努力有可能加速该领域的进展。