School of Mechanical Engineering Vellore Institute of Technology, Vellore, Tamil Nadu 632014, India.
ACS Appl Bio Mater. 2021 Dec 20;4(12):8129-8158. doi: 10.1021/acsabm.1c00949. Epub 2021 Nov 17.
Bio-scaffolds are synthetic entities widely employed in bone and soft-tissue regeneration applications. These bio-scaffolds are applied to the defect site to provide support and favor cell attachment and growth, thereby enhancing the regeneration of the defective site. The progressive research in bio-scaffold fabrication has led to identification of biocompatible and mechanically stable materials. The difficulties in obtaining grafts and expenditure incurred in the transplantation procedures have also been overcome by the implantation of bio-scaffolds. Drugs, cells, growth factors, and biomolecules can be embedded with bio-scaffolds to provide localized treatments. The right choice of materials and fabrication approaches can help in developing bio-scaffolds with required properties. This review mostly focuses on the available materials and bio-scaffold techniques for bone and soft-tissue regeneration application. The first part of this review gives insight into the various classes of biomaterials involved in bio-scaffold fabrication followed by design and simulation techniques. The latter discusses the various additive, subtractive, hybrid, and other improved techniques involved in the development of bio-scaffolds for bone regeneration applications. Techniques involving multimaterial printing and multidimensional printing have also been briefly discussed.
生物支架是广泛应用于骨和软组织再生应用的合成实体。这些生物支架应用于缺陷部位,提供支撑并有利于细胞附着和生长,从而增强缺陷部位的再生。生物支架制造的不断研究已经导致了生物相容性和机械稳定材料的鉴定。通过生物支架的植入,也克服了获取移植物的困难和移植过程中的花费。药物、细胞、生长因子和生物分子可以与生物支架一起嵌入,以提供局部治疗。选择合适的材料和制造方法有助于开发具有所需性能的生物支架。本综述主要关注骨和软组织再生应用中可用的材料和生物支架技术。本综述的第一部分深入了解了生物支架制造中涉及的各种类别的生物材料,然后介绍了设计和模拟技术。后者讨论了涉及骨再生应用中生物支架开发的各种添加剂、减法、混合和其他改进技术。还简要讨论了涉及多材料打印和多维打印的技术。