Department of Biochemistry, Nijmegen Centre for Molecular Life Sciences, Radboud University Nijmegen Medical Centre, Nijmegen, The Netherlands.
Tissue Eng Part B Rev. 2011 Feb;17(1):33-55. doi: 10.1089/ten.TEB.2010.0473. Epub 2010 Dec 19.
Cutaneous wounding often leads to contraction and scarring, which may result in a range of functional, cosmetic, and psychological complications. Tissue-engineered skin substitutes are being developed to enhance restoration of the skin and improve the quality of wound healing. The aim of this review is to provide researchers in the field of tissue engineering an overview of the methods that are currently used to clinically evaluate skin wound healing, and methods that are used to evaluate tissue-engineered constructs in animal models. Clinically, the quality of wound healing is assessed by noninvasive subjective scar assessment scales and objective techniques to measure individual scar features. Alternatively, invasive technologies are used. In animal models, most tissue-engineered skin constructs studied are at least evaluated macroscopically and by using conventional histology (hematoxylin-eosin staining). Planimetry and immunohistochemistry are also often applied. An overview of antibodies used is provided. In addition, some studies used methods to assess gene expression levels and mRNA location, transillumination for blood vessel observation, in situ/in vivo imaging, electron microscopy, mechanical strength assessment, and microbiological sampling. A more systematic evaluation of tissue-engineered skin constructs in animal models is recommended to enhance the comparison of different constructs, thereby accelerating the trajectory to application in human patients. This would be further enhanced by the embracement of more clinically relevant objective evaluation methods. In addition, fundamental knowledge on construct-mediated wound healing may be increased by new developments in, for example, gene expression analysis and noninvasive imaging.
皮肤创伤常导致收缩和瘢痕形成,从而导致一系列功能、美容和心理并发症。正在开发组织工程皮肤替代物以增强皮肤的修复并改善伤口愈合的质量。本综述的目的是为组织工程领域的研究人员提供当前用于临床评估皮肤伤口愈合的方法概述,以及用于评估动物模型中组织工程构建体的方法概述。临床上,通过非侵入性主观瘢痕评估量表和测量个体瘢痕特征的客观技术来评估伤口愈合的质量。或者,可以使用侵入性技术。在动物模型中,大多数研究的组织工程皮肤构建体至少通过宏观评估和常规组织学(苏木精-伊红染色)进行评估。平面测量和免疫组织化学也经常应用。提供了用于评估的抗体概述。此外,一些研究使用了评估基因表达水平和 mRNA 位置的方法、用于观察血管的透照法、原位/体内成像、电子显微镜、机械强度评估和微生物取样。建议对动物模型中的组织工程皮肤构建体进行更系统的评估,以增强对不同构建体的比较,从而加速在人类患者中的应用。通过采用更多与临床相关的客观评估方法,可以进一步增强这一点。此外,通过例如基因表达分析和非侵入性成像等新发展,可以增加构建体介导的伤口愈合的基础知识。