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用于骨组织工程的聚己内酯/聚乳酸-羟基乙酸共聚物/β-磷酸三钙螺旋结构支架的制备与评价

Fabrication and Evaluation of PCL/PLGA/β-TCP Spiral-Structured Scaffolds for Bone Tissue Engineering.

作者信息

Wang Weiwei, Zhou Xiaqing, Wang Haoyu, Zhou Gan, Yu Xiaojun

机构信息

Department of Biomedical Engineering, Charles V. Schaefer School of Engineering and Sciences, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

Department of Chemistry and Chemical Biology, Charles V. Schaefer School of Engineering and Sciences, Stevens Institute of Technology, Hoboken, NJ 07030, USA.

出版信息

Bioengineering (Basel). 2024 Jul 19;11(7):732. doi: 10.3390/bioengineering11070732.

Abstract

Natural bone is a complex material that has been carefully designed. To prepare a successful bone substitute, two challenging conditions need to be met: biocompatible and bioactive materials for cell proliferation and differentiation, and appropriate mechanical stability after implantation. Therefore, a hybrid Poly ε-caprolactone/Poly(lactic-co-glycolide)/β-tricalcium phosphate (PCL/PLGA/β-TCP) scaffold has been introduced as a suitable composition that satisfies the above two conditions. The blended PCL and PLGA can improve the scaffold's mechanical properties and biocompatibility compared to single PCL or PLGA scaffolds. In addition, the incorporated β-TCP increases the mechanical strength and osteogenic potential of PCL/PLGA scaffolds, while the polymer improves the mechanical stability of ceramic scaffolds. The PCL/PLGA/β-TCP scaffold is designed using spiral structures to provide a much better transport system through the gaps between spiral walls than conventional cylindrical scaffolds. Human fetal osteoblasts (hFOBs) were cultured on spiral PCL/PLGA/β-TCP (PPBS), cylindrical PCL/PLGA/β-TCP (PPBC), and cylindrical PCL scaffolds for a total of 28 days. The cell proliferation, viability, and osteogenic differentiation capabilities were analyzed. Compared with PCL and PPBC scaffolds, the PPBS scaffold exhibits great biocompatibility and potential to stimulate cell proliferation and differentiation and, therefore, can serve as a bone substitute for bone tissue regeneration.

摘要

天然骨是一种经过精心设计的复杂材料。要制备成功的骨替代物,需要满足两个具有挑战性的条件:用于细胞增殖和分化的生物相容性和生物活性材料,以及植入后适当的机械稳定性。因此,一种混合的聚ε-己内酯/聚(乳酸-共-乙醇酸)/β-磷酸三钙(PCL/PLGA/β-TCP)支架已被引入,作为一种满足上述两个条件的合适组合物。与单一的PCL或PLGA支架相比,混合的PCL和PLGA可以改善支架的机械性能和生物相容性。此外,掺入的β-TCP增加了PCL/PLGA支架的机械强度和成骨潜力,而聚合物提高了陶瓷支架的机械稳定性。PCL/PLGA/β-TCP支架采用螺旋结构设计,与传统的圆柱形支架相比,通过螺旋壁之间的间隙提供了更好的传输系统。将人胎儿成骨细胞(hFOBs)在螺旋PCL/PLGA/β-TCP(PPBS)、圆柱形PCL/PLGA/β-TCP(PPBC)和圆柱形PCL支架上共培养28天。分析细胞增殖、活力和成骨分化能力。与PCL和PPBC支架相比,PPBS支架表现出良好的生物相容性以及刺激细胞增殖和分化的潜力,因此可以作为骨组织再生的骨替代物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4d1/11274088/1c6c0f43b65e/bioengineering-11-00732-sch001.jpg

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