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3D打印技术在骨科关节中的应用进展 被引量:10
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作者 林林 陈莉智 +1 位作者 黄文华 曾春 《中国医学物理学杂志》 CSCD 2019年第1期121-124,共4页
随着新材料技术的不断发展,3D打印技术在骨科关节领域中的应用越来越广泛。本文综述了3D打印技术在骨科关节中的研究进展,分别介绍了3D打印在解剖学教育、医生和患者及其家属的术前沟通、临床治疗方案设计的应用,并对关节置换和骨关节... 随着新材料技术的不断发展,3D打印技术在骨科关节领域中的应用越来越广泛。本文综述了3D打印技术在骨科关节中的研究进展,分别介绍了3D打印在解剖学教育、医生和患者及其家属的术前沟通、临床治疗方案设计的应用,并对关节置换和骨关节软骨修复在组织工程领域的进展进行了阐述。最后,对3D打印技术在该领域未来的机遇和挑战进行了预测。 展开更多
关键词 3D打印 关节 关节置换 骨关节软骨修复 综述
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Repair of articular cartilage defects in rabbits through tissue-engineered cartilage constructed with chitosan hydrogel and chondrocytes 被引量:5
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作者 Ming ZHAO Zhu CHEN +6 位作者 Kang LIU Yu-qing WAN Xu-dong LI Xu-wei LUO Yi-guang BAI Ze-long YANG Gang FENG 《Journal of Zhejiang University-Science B(Biomedicine & Biotechnology)》 SCIE CAS CSCD 2015年第11期914-923,共10页
Objective: In our previous work, we prepared a type of chitosan hydrogel with excellent biocompatibility. In this study, tissue-engineered cartilage constructed with this chitosan hydrogel and costal chondrocytes was... Objective: In our previous work, we prepared a type of chitosan hydrogel with excellent biocompatibility. In this study, tissue-engineered cartilage constructed with this chitosan hydrogel and costal chondrocytes was used to repair the articular cartilage defects. Methods: Chitosan hydrogels were prepared with a crosslinker formed by combining 1,6-diisocyanatohexane and polyethylene glycol. Chitosan hydrogel scaffold was seeded with rabbit chondrocytes that had been cultured for one week in vitro to form the preliminary tissue-engineered cartilage. This preliminary tissue-engineered cartilage was then transplanted into the defective rabbit articular cartilage. There were three treatment groups: the experimental group received preliminary tissue-engineered cartilage; the blank group received pure chitosan hydrogels; and, the control group had received no implantation. The knee joints were harvested at predetermined time. The repaired cartilage was analyzed through gross morphology, histologically and immunohistochemically. The repairs were scored according to the international cartilage repair society (ICRS) standard. Results: The gross morphology results suggested that the defects were repaired completely in the experimental group after twelve weeks. The regenerated tissue connected closely with subchondral bone and the boundary with normal tissue was fuzzy. The cartilage lacuna in the regenerated tissue was similar to normal cartilage lacuna. The results of ICRS gross and histological grading showed that there were significant differences among the three groups (P〈0.05). Conclusions: Chondrocytes implanted in the scaffold can adhere, proliferate, and secrete extracellular matrix. The novel tissue-engineered cartilage constructed in our research can completely repair the structure of damaged articular cartilage. 展开更多
关键词 Articular cartilage Chitosan hydrogel REPAIR Tissue engineering
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