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骨组织工程的制造技术和材料的现状。

Current state of fabrication technologies and materials for bone tissue engineering.

机构信息

Department of Mechanical Engineering, Faculty of Engineering, U. of Alberta, Edmonton, AB, Canada.

Department of Chemical & Materials Engineering, Faculty of Engineering, U. of Alberta, Edmonton, AB, Canada.

出版信息

Acta Biomater. 2018 Oct 15;80:1-30. doi: 10.1016/j.actbio.2018.09.031. Epub 2018 Sep 22.

Abstract

A range of traditional and free-form fabrication technologies have been investigated and, in numerous occasions, commercialized for use in the field of regenerative tissue engineering (TE). The demand for technologies capable of treating bone defects inherently difficult to repair has been on the rise. This quest, accompanied by the advent of functionally tailored, biocompatible, and biodegradable materials, has garnered an enormous research interest in bone TE. As a result, different materials and fabrication methods have been investigated towards this end, leading to a deeper understanding of the geometrical, mechanical and biological requirements associated with bone scaffolds. As our understanding of the scaffold requirements expands, so do the capability requirements of the fabrication processes. The goal of this review is to provide a broad examination of existing scaffold fabrication processes and highlight future trends in their development. To appreciate the clinical requirements of bone scaffolds, a brief review of the biological process by which bone regenerates itself is presented first. This is followed by a summary and comparisons of commonly used implant techniques to highlight the advantages of TE-based approaches over traditional grafting methods. A detailed discussion on the clinical and mechanical requirements of bone scaffolds then follows. The remainder of the manuscript is dedicated to current scaffold fabrication methods, their unique capabilities and perceived shortcomings. The range of biomaterials employed in each fabrication method is summarized. Selected traditional and non-traditional fabrication methods are discussed with a highlight on their future potential from the authors' perspective. This study is motivated by the rapidly growing demand for effective scaffold fabrication processes capable of economically producing constructs with intricate and precisely controlled internal and external architectures. STATEMENT OF SIGNIFICANCE: The manuscript summarizes the current state of fabrication technologies and materials used for creating scaffolds in bone tissue engineering applications. A comprehensive analysis of different fabrication methods (traditional and free-form) were summarized in this review paper, with emphasis on recent developments in the field. The fabrication techniques suitable for creating scaffolds for tissue engineering was particularly targeted and their use in bone tissue engineering were articulated. Along with the fabrication techniques, we emphasized the choice of materials in these processes. Considering the limitations of each process, we highlighted the materials and the material properties critical in that particular process and provided a brief rational for the choice of the materials. The functional performance for bone tissue engineering are summarized for different fabrication processes and the choice of biomaterials. Finally, we provide a perspective on the future of the field, highlighting the knowledge gaps and promising avenues in pursuit of effective scaffolds for bone tissue engineering. This extensive review of the field will provide research community with a reference source for current approaches to scaffold preparation. We hope to encourage the researchers to generate next generation biomaterials to be used in these fabrication processes. By providing both advantages and disadvantage of each fabrication method in detail, new fabrication techniques might be devised that will overcome the limitations of the current approaches. These studies should facilitate the efforts of researchers interested in generating ideal scaffolds, and should have applications beyond the repair of bone tissue.

摘要

已经研究了一系列传统和自由形式的制造技术,并在许多情况下将其商业化,用于再生组织工程(TE)领域。对能够治疗固有难以修复的骨缺损的技术的需求一直在增长。伴随着功能定制、生物相容性和可生物降解材料的出现,骨 TE 领域引起了极大的研究兴趣。结果,针对这一目标,研究了不同的材料和制造方法,从而加深了对骨支架相关的几何、机械和生物学要求的理解。随着我们对支架要求的理解的加深,制造工艺的能力要求也在不断提高。本综述的目的是广泛考察现有的支架制造工艺,并强调其发展的未来趋势。为了了解骨支架的临床要求,首先简要回顾一下骨自身再生的生物学过程。接下来,对常用的植入技术进行了总结和比较,以突出基于 TE 的方法相对于传统移植方法的优势。然后详细讨论了骨支架的临床和机械要求。本文的其余部分致力于当前的支架制造方法、它们独特的能力和感知到的缺点。总结了每种制造方法中使用的生物材料范围。选择传统和非传统的制造方法进行了讨论,并从作者的角度突出了它们未来的潜力。这项研究的动机是对能够经济地制造具有复杂和精确控制的内部和外部结构的构造的有效支架制造工艺的需求不断增长。

意义声明

本文总结了用于骨组织工程应用的支架制造的当前技术和材料状态。本文综述了各种制造方法(传统和自由形式)的综合分析,特别针对该领域的最新发展。本文针对特别适合用于组织工程支架制造的制造技术进行了讨论,并阐述了它们在骨组织工程中的应用。除了制造技术,我们还强调了这些过程中材料的选择。考虑到每个过程的局限性,我们强调了在特定过程中至关重要的材料和材料特性,并对材料的选择提供了简要的理由。对于不同制造工艺的骨组织工程的功能性能进行了总结,并对生物材料进行了选择。最后,我们提供了对该领域未来的展望,强调了在追求骨组织工程有效支架的过程中存在的知识空白和有前途的途径。对该领域的广泛综述将为研究界提供支架制备的参考来源。我们希望鼓励研究人员开发用于这些制造工艺的下一代生物材料。通过详细说明每种制造方法的优缺点,可能会设计出克服当前方法局限性的新制造技术。这些研究应该有助于对生成理想支架感兴趣的研究人员的努力,并且应该超越骨组织修复的应用。

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