首页> 外文期刊>Biomaterials >The repair of osteochondral defects using baculovirus-mediated gene transfer with de-differentiated chondrocytes in bioreactor culture.
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The repair of osteochondral defects using baculovirus-mediated gene transfer with de-differentiated chondrocytes in bioreactor culture.

机译:使用杆状病毒介导的基因转移与生物反应器培养中去分化的软骨细胞进行骨软骨缺损的修复。

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摘要

Baculovirus has emerged as a promising gene delivery vector. Hereby de-differentiated rabbit chondrocytes were transduced ex vivo with a recombinant baculovirus expressing BMP-2 (Bac-CB), seeded to scaffolds and cultured statically for 1 day (Bac-w0 group) or in a rotating-shaft bioreactor (RSB) for 1 week (Bac-w1 group) or 3 weeks (Bac-w3 group). Mock-transduced constructs were cultured statically for 1 day to serve as the control (Mock-w0 group). We unraveled that Bac-CB transduction and increasing culture time in the RSB yielded more mature cartilaginous constructs in vitro. Eight weeks after implanting into the rabbit osteochondral defects, Mock-w0 constructs failed to repair the lesion while Bac-w0 constructs resulted in augmented, yet incomplete, repair. Bac-w1 constructs yielded neocartilage layers rich in glycosaminoglycans and collagen II, but the integration between the graft and host cartilages was not complete. In contrast, Bac-w3 constructs led to the regeneration of hyaline cartilages as characterized by cartilage-like appearance, improved integration, chondrocytes clustered in lacunae, smooth and homogeneous matrix rich in collagen II and glycosaminoglycans but deficient in collagen I. In conclusion, combining baculovirus-modified de-differentiated chondrocytes and RSB culture creates constructs that repair osteochondral defects, and in vitro culture time dictates the construct maturation and subsequent in vivo repair.
机译:杆状病毒已经成为有前途的基因递送载体。因此,用表达BMP-2的重组杆状病毒离体转导去分化的兔软骨细胞(Bac-CB),接种到支架上并静态培养1天(Bac-w0组)或在旋转轴生物反应器(RSB)中培养。 1周(Bac-w1组)或3周(Bac-w3组)。将模拟转导的构建体静态培养1天,以作为对照(模拟w0组)。我们揭示了Bac-CB转导和RSB中培养时间的增加在体外产生了更成熟的软骨构建体。植入兔骨软骨缺损八周后,Mock-w0构建体无法修复病变,而Bac-w0构建体导致修复增强,但不完全。 Bac-w1构建体产生了富含糖胺聚糖和胶原II的新软骨层,但移植物和宿主软骨之间的整合并不完整。相反,Bac-w3构建体导致透明软骨的再生,其特征为软骨样外观,改善的整合,软骨细胞聚集在腔隙中,光滑而均匀的基质中,富含胶原蛋白II和糖胺聚糖,但缺乏胶原蛋白I。杆状病毒修饰的去分化软骨细胞和RSB培养物可构建修复骨软骨缺损的构建体,体外培养时间决定了构建体的成熟度和随后的体内修复。

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