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首页> 外文期刊>Journal of orthopaedic research >Collagen-targeted BMP3 fusion proteins arrayed on collagen matrices or porous ceramics impregnated with Type I collagen enhance osteogenesis in a rat cranial defect model.
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Collagen-targeted BMP3 fusion proteins arrayed on collagen matrices or porous ceramics impregnated with Type I collagen enhance osteogenesis in a rat cranial defect model.

机译:排列在胶原基质或浸有I型胶原的多孔陶瓷上的胶原靶向BMP3融合蛋白可增强大鼠颅骨缺损模型的成骨作用。

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Bone morphogenetic protein 3 (BMP3) is a potent osteoinductive growth factor belonging to the TGF-beta superfamily. In this study, we engineered a recombinant BMP3 protein to include an auxiliary collagen-targeting domain derived from von Willebrand coagulation factor (vWF). The collagen-targeted BMP3 fusion protein (rhBMP3-C) was expressed in E. coli, purified from bacterial inclusion bodies, renatured under controlled redox conditions, and assayed for biological activity in vitro and in vivo. The renatured rhBMP3-C fusion protein bound tightly to collagen matrices and inhibited DNA synthesis in normal rat calvaria cells and in two out of three human osteosarcoma cell lines tested. Alkaline phosphatase activity was increased in rat calvarial cells and was decreased in osteosarcoma cells in vitro in a dose-dependent manner. Collagen sponges impregnated with rhBMP3-C and implanted subcutaneously in Fischer-344 rats induced dose-dependent dystrophic calcification of the collagen matrix, with no evidence of ectopic bone formation. However, local injection of rhBMP3-C infused in a collagen suspension induced new bone formation on the periosteal surface of rat calvaria. Finally, in a rat cranial defect model, surgical implantation of rhBMP3-C arrayed on either collagen sponges or on porous ceramics coated with Type I collagen exhibited marked osteoinductive properties. Taken together, these results demonstrate the feasibility of engineering and manufacturing targeted-BMPs which exhibit an integral gain-of-function that may be exploited to therapeutic advantage in (i) the enhancement of effective local concentrations, (ii) the prevention of systemic biodistribution and side effects, and (iii) the design of improved osteoinductive matrices.
机译:骨形态发生蛋白3(BMP3)是一种有效的骨诱导生长因子,属于TGF-beta超家族。在这项研究中,我们设计了一种重组BMP3蛋白,使其包含一个衍生自von Willebrand凝血因子(vWF)的辅助胶原蛋白靶向结构域。靶向胶原的BMP3融合蛋白(rhBMP3-C)在大肠杆菌中表达,从细菌包涵体中纯化,在受控的氧化还原条件下变性,并在体外和体内测定其生物学活性。变性的rhBMP3-C融合蛋白与胶原蛋白基质紧密结合,并抑制了正常大鼠颅盖细胞和测试的三种人类骨肉瘤细胞中两种细胞的DNA合成。碱性磷酸酶活性在大鼠颅盖细胞中增加,而在骨肉瘤细胞中以剂量依赖性方式降低。掺有rhBMP3-C的胶原海绵并在Fischer-344大鼠中皮下植入,导致胶原基质的剂量依赖性营养不良性钙化,没有异位骨形成的迹象。然而,在胶原蛋白悬浮液中注入的rhBMP3-C局部注射在大鼠颅骨的骨膜表面诱导了新的骨形成。最后,在大鼠颅骨缺损模型中,在胶原海绵或涂有I型胶原的多孔陶瓷上排列的rhBMP3-C的手术植入表现出明显的骨诱导特性。综上所述,这些结果证明了工程和制造靶向BMP的可行性,这些BMP具有不可或缺的功能增益,可在以下方面发挥治疗优势:(i)增强有效局部浓度,(ii)预防系统性生物分布和副作用,以及(iii)设计改良的骨诱导基质。

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