Department of Bioengineering, Rice University, Houston, TX, USA.
Curr Opin Biotechnol. 2011 Oct;22(5):721-5. doi: 10.1016/j.copbio.2011.02.005. Epub 2011 Feb 25.
As tissue engineering becomes more of a clinical reality through the ongoing bench to bedside transition, research in this field must focus on addressing relevant clinical situations. Although most in vivo work in the area of bone tissue engineering focuses on bone regeneration within sterile, surgically created defects, there is a growing need for the investigation of bone tissue engineering approaches within contaminated or scarred wound beds, such as those that may be encountered following traumatic injury or during delayed reconstruction/regeneration. Significant work has been performed in the area of local drug delivery via biomaterial carriers, but there is little intersection in the available literature between antibiotic delivery and tissue regeneration. In this review, we examine recent advances in segmental bone defect animal models, bone tissue engineering, and drug delivery with the goal of identifying promising approaches and areas needing further investigation towards developing both a better understanding of and new tissue engineering approaches for addressing infection control while simultaneously initiating bone regeneration.
随着组织工程学通过不断的从实验室到临床的转化,越来越成为现实,该领域的研究必须专注于解决相关的临床情况。尽管骨组织工程学领域的大多数体内工作都集中在无菌、手术创建的缺陷内的骨再生,但人们越来越需要研究污染或瘢痕化的创伤床内的骨组织工程方法,例如创伤后或延迟重建/再生期间可能遇到的那些。通过生物材料载体进行局部药物输送方面已经做了大量工作,但可用文献中抗生素输送和组织再生之间几乎没有交叉。在这篇综述中,我们研究了节段性骨缺损动物模型、骨组织工程学和药物输送方面的最新进展,目的是确定有前途的方法和需要进一步研究的领域,以更好地了解和开发新的组织工程学方法来控制感染,同时启动骨再生。