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使用聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)和PHBV/生物玻璃支架的软骨组织工程

Cartilage tissue engineering using PHBV and PHBV/Bioglass scaffolds.

作者信息

Zhou Mingshu, Yu Dong

机构信息

Department of Plastic and Reconstructive Surgery, The Third Hospital Affiliated to Shandong Academy of Medical Sciences, Shandong Institute of Parasitic Diseases, Jining, Shandong 272033, P.R. China.

Department of Plastic and Reconstructive Surgery, Shanghai Ninth People's Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200011, P.R. China.

出版信息

Mol Med Rep. 2014 Jul;10(1):508-14. doi: 10.3892/mmr.2014.2145. Epub 2014 Apr 15.

Abstract

Scaffolds have an important role in cartilage tissue engineering. Poly(hydroxybutyrate‑co‑hydroxyvalerate) (PHBV) has been demonstrated to have potential as a scaffold for the three dimensional construction of engineered cartilage tissue. However, the poor hydrophilicity and mechanical strength associated with PHBV affects its clinical applications as a scaffold in cartilage tissue engineering. The incorporation of Bioglass (BG) into PHBV has been shown to improve the hydrophilicity and mechanical strength of PHBV matrices. Therefore, this study aimed to compare the properties of PHBV scaffolds and PHBV scaffolds containing 10% BG (w/w) (PHBV/10% BG) and to investigate the effects of these scaffolds on the properties of engineered cartilage in vivo. Rabbit auricular chondrocytes were seeded onto PHBV and PHBV/10% BG scaffolds. Differences in cartilage regeneration were compared between the neocartilage grown on the PHBV and the PHBV/10% BG scaffolds after 10 weeks of in vivo transplantation. The incorporation of BG into PHBV was observed to improve the hydrophilicity and compressive strength of the scaffold. Furthermore, after 10 weeks incubation in vivo, the cartilage‑like tissue formed using the PHBV/10% BG scaffolds was observed to be thicker, exhibit enhanced biomechanical properties and have a higher cartilage matrix content than that generated using the pure PHBV scaffolds. The results of this study demonstrate that the incorporation of BG into PHBV may generate composite scaffolds with improved properties for cartilage engineering.

摘要

支架在软骨组织工程中发挥着重要作用。聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)已被证明有潜力作为构建工程化软骨组织三维结构的支架。然而,与PHBV相关的亲水性和机械强度较差影响了其作为软骨组织工程支架的临床应用。已表明将生物玻璃(BG)掺入PHBV可改善PHBV基质的亲水性和机械强度。因此,本研究旨在比较PHBV支架和含10%BG(重量/重量)的PHBV支架(PHBV/10%BG)的性能,并研究这些支架对体内工程化软骨性能 的影响。将兔耳软骨细胞接种到PHBV和PHBV/10%BG支架上。在体内移植10周后,比较在PHBV和PHBV/10%BG支架上生长的新软骨之间软骨再生的差异。观察到将BG掺入PHBV可改善支架的亲水性和抗压强度。此外,在体内培养10周后,观察到使用PHBV/10%BG支架形成的类软骨组织比使用纯PHBV支架生成的组织更厚,表现出增强的生物力学性能且软骨基质含量更高。本研究结果表明,将BG掺入PHBV可能会产生具有改善性能的复合支架用于软骨工程。

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