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调控细胞/材料相互作用用于外科植入物的组织工程。

Orchestrating cell/material interactions for tissue engineering of surgical implants.

机构信息

UCL Centre for Nanotechnology & Regenerative Medicine, Division of Surgery & Interventional Science, University College London, London, UK.

出版信息

Macromol Biosci. 2012 Aug;12(8):1010-21. doi: 10.1002/mabi.201200039. Epub 2012 Jul 6.

Abstract

Research groups are currently recognising a critical clinical need for innovative approaches to organ failure and agenesis. Allografting, autologous reconstruction and prosthetics are hampered with severe limitations. Pertinently, readily available 'laboratory-grown' organs and implants are becoming a reality. Tissue engineering constructs vary in their design complexity depending on the specific structural and functional demands. Expeditious methods on integrating autologous stem cells onto nanoarchitectured 3D nanocomposites, are being transferred from lab to patients with a number of successful first-in-man experiences. Despite the need for a complete understanding of cell/material interactions tissue engineering is offering a plethora of exciting possibilities in regenerative medicine.

摘要

研究小组目前认识到,临床上迫切需要创新的方法来治疗器官衰竭和发育不全。同种异体移植、自体重建和假体都受到严重限制。相关地,现成的“实验室培养”器官和植入物正在成为现实。组织工程构建体的设计复杂性因特定的结构和功能需求而异。将自体干细胞整合到纳米结构 3D 纳米复合材料上的快速方法正在从实验室转移到患者身上,并且已经有一些首例人体试验取得了成功。尽管需要全面了解细胞/材料相互作用,但组织工程为再生医学提供了大量令人兴奋的可能性。

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