Shen Chang, Han Yuanyuan, Xiong Huan, Wang Yulai, Tan Ziqi, Wei Hewei, Ding Qiteng, Ma Lina, Ding Chuanbo, Zhao Ting
College of traditional Chinese Medicine, Jilin Agriculture Science and Technology College, Jilin 132101, China.
College of Chinese Medicinal Materials, Jilin Agricultural University, Changchun 130118, China.
Int J Biol Macromol. 2025 Mar;294:139418. doi: 10.1016/j.ijbiomac.2024.139418. Epub 2025 Jan 5.
With the advancement of medical technology, the utilization of bioactive materials to promote bone repair has emerged as a significant research area. Hydrogels, as biomaterials, play a crucial role in bone tissue engineering. These hydrogels exhibit high biocompatibility, providing in vivo ecological conditions conducive to cell survival, and offer substantial advantages in facilitating bone repair. Different matrices of hydrogels serve distinct functions. In recent years, numerous researchers have developed a variety of novel hydrogel materials utilizing diverse matrices. These materials not only enhance the osteogenic induction capacity of hydrogels but also improve their efficacy as scaffolds in the treatment of complex bone defects, such as those resulting from trauma, tumor resection, or large bone defects due to infection. This article primarily analyzes the role of hydrogels that utilize polysaccharides and polymers as matrices in bone tissue repair, focusing on the creation of an optimal microenvironment to promote bone regeneration. These investigations deepen the understanding of the mechanisms underlying the action of hydrogels and establish a foundation for future advancements in the biomedical field.
随着医学技术的进步,利用生物活性材料促进骨修复已成为一个重要的研究领域。水凝胶作为生物材料,在骨组织工程中发挥着关键作用。这些水凝胶具有高生物相容性,提供有利于细胞存活的体内生态条件,并在促进骨修复方面具有显著优势。不同基质的水凝胶发挥着不同的功能。近年来,众多研究人员利用不同基质开发了多种新型水凝胶材料。这些材料不仅增强了水凝胶的成骨诱导能力,还提高了它们作为支架治疗复杂骨缺损(如创伤、肿瘤切除或感染导致的大骨缺损)的疗效。本文主要分析了以多糖和聚合物为基质的水凝胶在骨组织修复中的作用,重点在于创建促进骨再生的最佳微环境。这些研究加深了对水凝胶作用机制的理解,并为生物医学领域的未来发展奠定了基础。