J Biomed Nanotechnol. 2020 Dec 1;16(12):1667-1686. doi: 10.1166/jbn.2020.2997.
Bone defect that resulted from trauma, tumors, and other reasons is believed as a common clinical problem, which exists mainly in post-traumatic healing. Additionally, autologous/allogeneic transplantation, bone tissue engineering attracts increasing attention due to the existing problem of the limited donor. The applications of biomaterials can be considered as a rising and promising strategy for bone regeneration. Especially, hydrogel is featured with hydrophilic characteristic, good biocompatibility, and porous structure, which shows unique properties for bone regeneration. The main properties of hydrogel such as surface property, adhesive property, mechanical property, porosity, and degradation property, generally present influences on the migration, proliferation, and differentiation of mesenchymal stem cells exclusively or in combination, which consequently affect the regeneration of bones. This review mainly focuses on the theme: "how properties of hydrogel shape bone regeneration." Moreover, the latest progress achieved in the above mentioned direction is further discussed. Despite the fascinating advances researchers have made, certain potential challenges continue to exist in the research field, which need to be addressed for accelerating the clinical translation of hydrogel in bone regeneration.
骨缺损是由创伤、肿瘤等原因引起的,被认为是一种常见的临床问题,主要存在于创伤后的愈合过程中。此外,由于供体有限,自体/同种异体移植、骨组织工程受到越来越多的关注。生物材料的应用可以被认为是一种新兴的、有前途的骨再生策略。特别是水凝胶具有亲水性、良好的生物相容性和多孔结构,为骨再生提供了独特的性能。水凝胶的主要性能,如表面性能、粘附性能、机械性能、多孔性和降解性能,通常单独或联合影响间充质干细胞的迁移、增殖和分化,从而影响骨的再生。本综述主要关注的主题是:“水凝胶的性能如何影响骨再生”。此外,还进一步讨论了上述方向的最新进展。尽管研究人员取得了引人注目的进展,但在骨再生的水凝胶研究领域仍存在一些潜在的挑战,需要加以解决,以加速水凝胶在临床中的转化。