Kim You Min, Ghim Min-Soo, Quan Meiling, Kim Young Yul, Cho Young-Sam
Division of Mechanical Engineering, Wonkwang University, 460 Iksandae-ro, Iksan 54538, Republic of Korea.
Department of Pathophysiology, School of Basic Medical Sciences, Beihua University, Jilin 132021, China.
Polymers (Basel). 2024 Jan 26;16(3):338. doi: 10.3390/polym16030338.
In the field of bone tissue engineering, which is being developed for the ideal restoration of bone defects, researchers are exploring the improvement of the bone regeneration efficacy of scaffolds through various approaches involving osteoconductive, osteoinductive, and angiogenic factors. In the current trend of research, there is also a suggestion that the topological factors of recent scaffolds may influence the attachment, migration, proliferation, and differentiation of bone cells. Building upon experimental confirmation of the effect of scaffold conformity with the defect site on enhanced bone regeneration in previous studies, we conducted this research to experimentally investigate the relationship between contact area with the defect site and bone regeneration efficacy. The results demonstrated that as the contact area of the scaffold increased, not only did the resistance to bone tissue growth increase, more significant bone regeneration also occurred, as evidenced through histological analysis and micro-CT analysis. This research confirms that the contact area between the scaffold and the defect site is a critical variable affecting bone regeneration efficacy, emphasizing its importance when designing customized scaffolds. This finding holds promising implications for future studies and applications in the field.
在致力于实现骨缺损理想修复的骨组织工程领域,研究人员正在通过涉及骨传导、骨诱导和血管生成因子的各种方法探索提高支架的骨再生功效。在当前的研究趋势中,也有观点认为近期支架的拓扑因素可能会影响骨细胞的附着、迁移、增殖和分化。基于之前研究中对支架与缺损部位的贴合度对增强骨再生效果的实验证实,我们开展了本研究,以实验方式探究与缺损部位的接触面积和骨再生功效之间的关系。结果表明,随着支架接触面积的增加,不仅对骨组织生长的阻力增加,还出现了更显著的骨再生,组织学分析和显微CT分析证明了这一点。本研究证实,支架与缺损部位之间的接触面积是影响骨再生功效的关键变量,强调了在设计定制支架时其重要性。这一发现对该领域未来的研究和应用具有广阔的前景。