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器官工程——将干细胞、生物材料和生物反应器结合起来,生产用于移植的生物工程器官。

Organ engineering--combining stem cells, biomaterials, and bioreactors to produce bioengineered organs for transplantation.

机构信息

Wake Forest Institute for Regenerative Medicine, Wake Forest University Health Sciences, Winston-Salem, NC, USA.

出版信息

Bioessays. 2013 Mar;35(3):163-72. doi: 10.1002/bies.201200062. Epub 2012 Sep 20.

Abstract

Often the only treatment available for patients suffering from diseased and injured organs is whole organ transplant. However, there is a severe shortage of donor organs for transplantation. The goal of organ engineering is to construct biological substitutes that will restore and maintain normal function in diseased and injured tissues. Recent progress in stem cell biology, biomaterials, and processes such as organ decellularization and electrospinning has resulted in the generation of bioengineered blood vessels, heart valves, livers, kidneys, bladders, and airways. Future advances that may have a significant impact for the field include safe methods to reprogram a patient's own cells to directly differentiate into functional replacement cell types. The subsequent combination of these cells with natural, synthetic and/or decellularized organ materials to generate functional tissue substitutes is a real possibility. This essay reviews the current progress, developments, and challenges facing researchers in their goal to create replacement tissues and organs for patients.

摘要

对于患有器官疾病和损伤的患者来说,通常唯一可用的治疗方法是进行整个器官移植。然而,可供移植的捐赠器官严重短缺。器官工程的目标是构建生物替代品,以恢复和维持患病和受损组织的正常功能。近年来,干细胞生物学、生物材料以及器官脱细胞和静电纺丝等技术的进步,已经产生了生物工程血管、心脏瓣膜、肝脏、肾脏、膀胱和气道。未来可能对该领域产生重大影响的进展包括安全地对患者自身细胞进行重编程,以直接分化为功能性替代细胞类型的方法。随后,将这些细胞与天然、合成和/或脱细胞器官材料结合起来,生成功能性组织替代品,这是一种切实可行的可能性。本文综述了研究人员在为患者创造替代组织和器官方面所取得的进展、发展和面临的挑战。

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