弯月面
生物相容性
植入
生物医学工程
脚手架
骨关节炎
材料科学
极限抗拉强度
透明质酸
组织工程
解剖
外科
医学
复合材料
病理
物理
替代医学
入射(几何)
光学
冶金
作者
Dan Cojocaru,Sylvia Hondke,Jan Philipp Krüger,Claudia Bosch,Cristian Croicu,Sorin Florescu,Adrian Emil Lăzărescu,Jenel‐Marian Patrascu,Jenel‐Marian Patrascu,Martin Dauner,Götz T. Gresser,Michaela Endres
摘要
Abstract Since loss of meniscus is correlated with an increasing risk for osteoarthritis, meniscal scaffolds are proposed as new strategies. Development of a suitable scaffold has to take into account differing meniscus thickness, exposure to compressive and tensile forces combined with high porosity and biocompatibility of the material. After physical testing of three flat scaffolds composed of different modified polyglycolic acid (PGA) fibers, a three‐dimensional meniscus‐shaped PGA‐hyaluronan implant was generated. Micro‐computed tomography showed 90% porosity in the outer area with 50% in the inner area of the implant. Biocompatibility and expression of meniscus typical cartilaginous genes were shown for human meniscus cells cultivated in the implant with 10% human serum or 5% platelet‐rich plasma for 14 days in vitro. The proof‐of‐concept study in sheep demonstrated proteoglycan‐ and collagen type I‐rich repair tissue formation in partial meniscectomy combined with a meniscus‐shaped PGA‐hyaluronan implant after 6 months. In contrast, the control showed nearly no repair tissue formation. Thus, meniscus‐shaped PGA‐hyaluronan implants might be a suitable therapeutic approach to support repair tissue formation in partial meniscectomy.
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