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干细胞、龛位和支架:在烧伤和伤口护理中的应用。

Stem cells, niches and scaffolds: Applications to burns and wound care.

机构信息

Stem Cell Research, Nuffield Division of Clinical Laboratory Medicine, Radcliffe Department of Medicine, University of Oxford, John Radcliffe Hospital, Oxford OX3 9BQ, UK.

Department of Plastic and Reconstructive Surgery, North Bristol NHS Trust and University of Bristol, Westbury on Trym, Bristol BS9 3TZ, UK.

出版信息

Adv Drug Deliv Rev. 2018 Jan 1;123:82-106. doi: 10.1016/j.addr.2017.10.012. Epub 2017 Oct 26.

Abstract

The importance of skin to survival, and the devastating physical and psychological consequences of scarring following reparative healing of extensive or difficult to heal human wounds, cannot be disputed. We discuss the significant challenges faced by patients and healthcare providers alike in treating these wounds. New state of the art technologies have provided remarkable insights into the role of skin stem and progenitor cells and their niches in maintaining skin homeostasis and in reparative wound healing. Based on this knowledge, we examine different approaches to repair extensive burn injury and chronic wounds, including full and split thickness skin grafts, temporising matrices and scaffolds, and composite cultured skin products. Notable developments include next generation skin substitutes to replace split thickness skin autografts and next generation gene editing coupled with cell therapies to treat genodermatoses. Further refinements are predicted with the advent of bioprinting technologies, and newly defined biomaterials and autologous cell sources that can be engineered to more accurately replicate human skin architecture, function and cosmesis. These advances will undoubtedly improve quality of life for patients with extensive burns and difficult to heal wounds.

摘要

皮肤对生存至关重要,而广泛或难以治愈的人类伤口在修复后留下的疤痕会给身体和心理带来毁灭性的后果,这一点毋庸置疑。我们讨论了患者和医疗保健提供者在治疗这些伤口时所面临的巨大挑战。最先进的新技术为皮肤干细胞和祖细胞及其在维持皮肤内稳态和修复性伤口愈合中的生态位的作用提供了重要的见解。基于这些知识,我们研究了修复大面积烧伤和慢性伤口的不同方法,包括全厚和断层皮片移植、临时基质和支架以及复合培养皮肤产品。值得注意的进展包括替代断层皮片自体移植的下一代皮肤替代品,以及与细胞疗法相结合的下一代基因编辑技术,以治疗遗传性皮肤病。随着生物打印技术的出现,以及可以工程设计以更准确地复制人类皮肤结构、功能和美容的新型生物材料和自体细胞来源,预计还会有进一步的改进。这些进展无疑将提高大面积烧伤和难以治愈伤口患者的生活质量。

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