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Biological Augmentation and Tissue Engineering Approaches in Meniscus Surgery

机译:生物增加和组织工程方法在半月板手术

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Purpose: The purpose of this review was to evaluate the role of biological augmentation and tissue engineering strategies in meniscus surgery. Although clinical (human), preclinical (animal), and in vitro tissue engineering studies are included here, we have placed additional focus on addressing preclinical and clinical studies reported during the 5-year period used in this review in a systematic fashion while also providing a summary review of some important in vitro tissue engineering findings in the field over the past decade. Methods: A search was performed on PubMed for original works published from 2009 to March 31, 2014 using the term "meniscus" with all the following terms: "scaffolds," "constructs," "cells," "growth factors," "implant," "tissue engineering," and "regenerative medicine." Inclusion criteria were the following: English-language articles and original clinical, preclinical (in vivo), and in vitro studies of tissue engineering and regenerative medicine application in knee meniscus lesions published from 2009 to March 31, 2014. Results: Three clinical studies and 18 preclinical studies were identified along with 68 tissue engineering in vitro studies. These reports show the increasing promise of biological augmentation and tissue engineering strategies in meniscus surgery. The role of stem cell and growth factor therapy appears to be particularly useful. A review of in vitro tissue engineering studies found a large number of scaffold types to be of promise for meniscus replacement. Limitations include a relatively low number of clinical or preclinical in vivo studies, in addition to the fact there is as yet no report in the literature of a tissue-engineered meniscus construct used clinically. Neither does the literature provide clarity on the optimal meniscus scaffold type or biological augmentation with which meniscus repair or replacement would be best addressed in the future. There is increasing focus on the role of mechanobiology and biomechanical and biochemical cues in this process, however, and it is hoped that this may lead to improvements in this strategy. Conclusions: There appears to be significant potential for biological augmentation and tissue engineering strategies in meniscus surgery to enhance options for repair and replacement. However, there are still relatively few clinical studies being reported in this regard. There is a strong need for improved translational activities and infrastructure to link the large amounts of in vitro and preclinical biological and tissue engineering data to clinical application.
机译:目的:本文的目的是评估生物增强的作用在半月板组织工程策略手术。(动物),体外组织工程研究都包含在这里,我们有放置额外的吗专注于解决临床前和临床研究报告在5年期间使用本文以系统化的方式同时也提供一些重要的总结回顾体外组织工程研究在过去的十年。在PubMed上执行发布的原创作品从2009年到2014年3月31日使用这个词“半月板”与所有以下条款:“支架”、“构建”、“细胞”,”增长因素”、“植入”、“组织工程”“再生医学”。:英语文章和最初的临床、临床前(体内),和体外组织工程的研究再生医学应用在膝盖半月板损伤从2009年3月31日发布2014. 随着68年临床前研究确定体外组织工程研究。报告显示,增加生物的承诺增加和组织工程策略半月板手术。生长因子疗法似乎特别有用的。研究发现大量的脚手架类型是半月板更换的承诺。包括一个相对较少的限制临床或临床前体内研究,除了现在还没有报道组织工程半月板的文献构建临床使用。文学提供最优的清晰半月板支架类型或生物增强半月板的维修或更换在未来是最好的解决。增加关注力学生物学的作用生物力学和生物化学信号过程,然而,希望这可能导致这一策略的改善。结论:似乎有意义潜在的生物增加和组织工程在半月板手术策略提高选择修理和更换。然而,仍然有临床相对较少在这方面的研究报告。为提高转化活动强烈的需求和基础设施大量链接在体外和临床生物和组织临床应用工程数据。

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