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小儿外科的组织工程与再生医学研究展望

Tissue engineering and regenerative medicine research perspectives for pediatric surgery.

作者信息

Saxena Amulya K

机构信息

Experimental Fetal Surgery and Tissue Engineering Unit, Department of Pediatric and Adolescent Surgery, Medical University of Graz, Auenbruggerplatz-34, 8036, Graz, Austria.

出版信息

Pediatr Surg Int. 2010 Jun;26(6):557-73. doi: 10.1007/s00383-010-2591-8. Epub 2010 Mar 24.

Abstract

Tissue engineering and regenerative medicine research is being aggressively pursued in attempts to develop biological substitutes to replace lost tissue or organs. Remarkable degrees of success have been achieved in the generation of a variety of tissues and organs as a result of concerted contributions by multidisciplinary groups in the field of biotechnology. Engineering of an organ is a complex process which is initiated by appropriate sourcing of cells and their controlled proliferation to achieve critical numbers for seeding on biodegradable scaffolds in order to create cell-scaffold constructs, which are thereafter maintained in bioreactors to generate tissues identical to those required for replacement. Extensive efforts in understanding the characteristics of cells and their interaction with specifically tailored scaffolds holds the key to their attachment, controlled proliferation and differentiation, intercommunication, and organization to form tissues. The demand for tissue-engineered organs is enormous and this technology holds the promise to supply customized organs to overcome the severe shortages that are currently faced by the pediatric patient, especially due to organ-size mismatch. The contemporary state of tissue-engineering technology presented in this review summarizes the advances in the various areas of regenerative medicine and addresses issues that are associated with its future implementation in the pediatric surgical patient.

摘要

组织工程和再生医学研究正在积极开展,旨在开发生物替代品以替代受损组织或器官。由于生物技术领域多学科团队的共同努力,在多种组织和器官的生成方面已取得了显著的成功。器官工程是一个复杂的过程,首先要适当地获取细胞并对其进行可控增殖,以达到在可生物降解支架上接种所需的临界数量,从而构建细胞-支架结构体,然后将其置于生物反应器中培养,以生成与所需替代组织相同的组织。深入了解细胞特性及其与特定定制支架的相互作用,是实现细胞附着、可控增殖与分化、相互通讯以及组织形成的关键。对组织工程器官有着巨大的需求,这项技术有望提供定制器官,以克服儿科患者目前面临的严重短缺问题,尤其是由于器官尺寸不匹配导致的短缺。本综述中介绍的组织工程技术的当代状况总结了再生医学各个领域的进展,并探讨了其在儿科手术患者中未来应用所涉及的问题。

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