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Whole-organ tissue engineering: decellularization and recellularization of three-dimensional matrix scaffolds.

机译:全器官组织工程:三维基质支架的脱细胞和再细胞化。

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摘要

The definitive treatment for end-stage organ failure is orthotopic transplantation. However, the demand for transplantation far exceeds the number of available donor organs. A promising tissue-engineering/regenerative-medicine approach for functional organ replacement has emerged in recent years. Decellularization of donor organs such as heart, liver, and lung can provide an acellular, naturally occurring three-dimensional biologic scaffold material that can then be seeded with selected cell populations. Preliminary studies in animal models have provided encouraging results for the proof of concept. However, significant challenges for three-dimensional organ engineering approach remain. This manuscript describes the fundamental concepts of whole-organ engineering, including characterization of the extracellular matrix as a scaffold, methods for decellularization of vascular organs, potential cells to reseed such a scaffold, techniques for the recellularization process and important aspects regarding bioreactor design to support this approach. Critical challenges and future directions are also discussed.
机译:终末期器官衰竭的明确治疗方法是原位移植。但是,移植的需求远远超过了可用的供体器官的数量。近年来出现了有希望的用于功能器官置换的组织工程/再生医学方法。供体器官(例如心脏,肝脏和肺)的脱细胞作用可以提供一种无细胞的,自然发生的三维生物支架材料,然后可以将其植入选定的细胞群。动物模型的初步研究为概念验证提供了令人鼓舞的结果。但是,三维器官工程方法仍然面临重大挑战。该手稿描述了整个器官工程学的基本概念,包括表征细胞外基质作为支架,血管器官脱细胞的方法,重新植入这种支架的潜在细胞,重新细胞化过程的技术以及有关支持生物反应器设计的重要方面这种方法。还讨论了关键挑战和未来方向。

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