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Three‐dimensional polycaprolactone scaffold‐conjugated bone morphogenetic protein‐2 promotes cartilage regeneration from primary chondrocytes in vitro and in vivo without accelerated endochondral ossification

机译:三维聚己内酯支架 - 缀合的骨形态发生蛋白-2在体外和体内促进原代软骨细胞的软骨再生,而不会加速软骨内骨化

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摘要

As articular cartilage is avascular, and mature chondrocytes do not proliferate, cartilage lesions have a limited capacity for regeneration after severe damage. The treatment of such damage has been challenging due to the limited availability of autologous healthy cartilage and lengthy and expensive cell isolation and expansion procedures. Hence, the use of bone morphogenetic protein‐2 (BMP‐2), a potent regulator of chondrogenic expression, has received considerable attention in cartilage and osteochondral tissue engineering. However, the exact role of BMP‐2 in cartilage repair has been postulated to promote both cartilage formation and subsequent cartilage degradation through hypertrophy and endochondral ossification. Furthermore, it is likely that the manner in which BMP‐2 is presented to chondrocytes will influence the physiologic pathway (repair vs. degeneration). This study investigates the relative influence of BMP‐2 on cartilage matrix and potential subsequent bone matrix production using primary chondrocytes seeded on designed 3D polycaprolactone (PCL) scaffolds with chemically conjugated BMP‐2. The results show that chemically conjugated BMP‐2 PCL scaffolds can promote significantly greater cartilage regeneration from seeded chondrocytes both in vitro and in vivo compared with untreated scaffolds. Furthermore, our results demonstrate that the conjugated BMP‐2 does not particularly accelerate endochondral ossification even in a readily permissible and highly vascular in vivo environment compared with untreated PCL scaffolds. This study not only reveals the potential use of the BMP‐2 conjugation delivery method for enhanced cartilage tissue formation but also gives new insights for the effects of conjugated BMP‐2 on cartilage regeneration and osteochondral ossification. © 2012 Wiley Periodicals, Inc. J Biomed Mater Res Part A, 2012.
机译:由于关节软骨是无血管的,并且成熟的软骨细胞不会增殖,因此严重损伤后软骨损伤的再生能力有限。由于自体健康软骨的可用性有限以及漫长而昂贵的细胞分离和扩增程序,因此此类损伤的治疗一直具有挑战性。因此,在软骨和骨软骨组织工程中,骨形态发生蛋白-2(BMP-2)(一种有效的软骨形成表达调节剂)的使用受到了广泛的关注。但是,已经推测BMP-2在软骨修复中的确切作用是通过肥大和软骨内骨化促进软骨形成和随后的软骨降解。此外,将BMP-2呈递给软骨细胞的方式可能会影响生理途径(修复与变性)。这项研究调查了BMP-2对软骨基质和潜在的后续骨基质产生的相对影响,该过程使用在化学偶联BMP-2设计的3D聚己内酯(PCL)支架上播种的原代软骨细胞进行。结果表明,与未处理的支架相比,化学偶联的BMP-2 PCL支架在体外和体内均可显着促进来自植入软骨细胞的软骨再生。此外,我们的结果表明,与未经处理的PCL支架相比,即使在易于允许且高度血管的体内环境中,缀合的BMP-2也不特别加速软骨内骨化。这项研究不仅揭示了BMP-2偶联递送方法在增强软骨组织形成中的潜在用途,而且还为结合BMP-2对软骨再生和骨软骨骨化的影响提供了新见解。 ©2012 Wiley Periodicals,Inc. J Biomed Mater Res Part A,2012年。

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