a Department of Cardiothoracic Transplantation & Vascular Surgery , Hannover Medical School , Hannover , Germany .
b Bioengineering Research Group, Nanotechnology & Advanced Materials Department , Materials & Energy Research Center (MERC) , Tehran , Iran .
Crit Rev Biotechnol. 2016 Aug;36(4):705-15. doi: 10.3109/07388551.2015.1007495. Epub 2015 Mar 5.
Whole-organ decellularization and tissue engineering approaches have made significant inroads during recent years. If proven to be successful and clinically viable, it is highly likely that this field would be poised to revolutionize organ transplantation surgery. In particular, whole-heart decellularization has captured the attention and imagination of the scientific community. This technique allows for the generation of a complex three-dimensional (3D) extracellular matrix scaffold, with the preservation of the intrinsic 3D basket-weave macroarchitecture of the heart itself. The decellularized scaffold can then be recellularized by seeding it with cells and incubating it in perfusion bioreactors in order to create functional organ constructs for transplantation. Indeed, research into this strategy of whole-heart tissue engineering has consequently emerged from the pages of science fiction into a proof-of-concept laboratory undertaking. This review presents current trends and advances, and critically appraises the concepts involved in various approaches to whole-heart decellularization and tissue engineering.
近年来,整体器官脱细胞化和组织工程方法取得了重大进展。如果被证明是成功的并且在临床上可行的,那么这个领域很有可能会彻底改变器官移植手术。特别是,整个心脏脱细胞化引起了科学界的关注和想象。该技术允许生成复杂的三维 (3D) 细胞外基质支架,同时保留心脏本身固有 3D 篮状宏观结构。然后可以通过接种细胞并用灌注生物反应器孵育脱细胞支架来对其进行再细胞化,以创建用于移植的功能性器官构建体。实际上,这种整体心脏组织工程策略的研究已经从科幻小说的页面中脱颖而出,成为了一个概念验证的实验室研究。本文综述了当前的趋势和进展,并批判性地评估了各种整体心脏脱细胞化和组织工程方法中涉及的概念。