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Long bone defect models for tissue engineering applications: criteria for choice.

机译:用于组织工程应用的长骨缺损模型:选择标准。

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摘要

The replacement and repair of bone lost due to trauma, cancer, or congenital defects is a major clinical challenge. Skeletal tissue engineering is a potentially powerful strategy in modern regenerative medicine, and research in this field has increased greatly in recent years. Tissue engineering strategies seek to translate research findings in the fields of materials science, stem cell biology, and biomineralization into clinical applications, demanding the use of appropriate in vivo models to investigate bone regeneration of the long bone. However, identification of the optimal in vivo segmental bone defect model from the literature is difficult due to the use of different animal species (large and small mammals), different bones (weight-bearing and nonweight bearing), and multiple protocols, including the use of various scaffolds, cells, and bioactives. The aim of this review is to summarize the available animal models for evaluating long bone regeneration in vivo. We highlight the differences not only in species and sites but also in defect size, means of defect creation, duration of study, and fixation method. A critical evaluation of the most clinically relevant models is addressed to guide the researcher in his/her choice of the most appropriate model to use in future hypothesis-driven investigations.
机译:由于创伤,癌症或先天性缺陷造成的骨丢失的置换和修复是一项重大的临床挑战。骨骼组织工程是现代再生医学中潜在的强大策略,近年来,该领域的研究已大大增加。组织工程策略试图将材料科学,干细胞生物学和生物矿化领域的研究结果转化为临床应用,要求使用适当的体内模型来研究长骨的骨再生。但是,由于使用不同的动物物种(大型和小型哺乳动物),不同的骨骼(承重和不承重)以及多种协议(包括使用),因此难以从文献中确定最佳的体内节段性骨缺损模型各种支架,细胞和生物活性物质。这篇综述的目的是总结用于评估体内长骨再生的可用动物模型。我们不仅着重于物种和部位的差异,还着重于缺陷尺寸,缺陷产生方式,研究持续时间和固定方法的差异。提出了对最临床相关模型的批判性评估,以指导研究人员选择最合适的模型以用于未来的假设驱动的研究。

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