首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >Development of collagen-hydroxyapatite scaffolds incorporating PLGA and alginate microparticles for the controlled delivery of rhBMP-2 for bone tissue engineering
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Development of collagen-hydroxyapatite scaffolds incorporating PLGA and alginate microparticles for the controlled delivery of rhBMP-2 for bone tissue engineering

机译:结合PLGA和藻酸盐微粒的胶原-羟基磷灰石支架的开发,用于骨组织工程中rhBMP-2的可控递送

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The spatiotemporally controlled delivery of the pro-osteogenic factor rhBMP-2 would overcome most of the severe secondary effects linked to the products delivering this protein for bone regeneration. With this in mind, the aim of the present work was to develop a controlled rhBMP-2 release system using collagen-hydroxyapatite (CHA) scaffolds, which had been previously optimized for bone regeneration, as delivery platforms to produce a device with enhanced capacity for bone repair. Spray-drying and emulsion techniques were used to encapsulate bioactive rhBMP-2 in alginate and PLGA microparticles, with a high encapsulation efficiency. After incorporation of these microparticles into the scaffolds, rhBMP-2 was delivered in a sustained fashion for up to 28 days. When tested in vitro with osteoblasts, these eluting materials showed an enhanced pro-osteogenic effect. From these results, an optimal rhBMP-2 eluting scaffold composition was selected and implanted in critical-sized calvarial defects in a rat model, where it demonstrated an excellent healing capacity in vivo. These platforms have an immense potential in the field of tissue regeneration; by tuning the specific therapeutic molecule to the tissue of interest and by utilizing different collagen-based scaffolds, similar systems can be developed for enhancing the healing of a diverse range of tissues and organs. (C) 2014 Elsevier B.V. All rights reserved.
机译:时空控制的促成骨因子rhBMP-2的传递将克服大多数与传递该蛋白用于骨再生的产品相关的严重次级影响。考虑到这一点,本工作的目的是开发一种使用胶原-羟基磷灰石(CHA)支架的可控rhBMP-2释放系统,该支架先前已针对骨再生进行了优化,作为递送平台,可生产出具有增强功能的装置骨修复。喷雾干燥和乳液技术用于将生物活性rhBMP-2包裹在藻酸盐和PLGA微粒中,具有很高的包裹效率。将这些微粒掺入支架后,rhBMP-2可以持续递送长达28天。当用成骨细胞进行体外测试时,这些洗脱物质显示出增强的促成骨作用。从这些结果中,选择了最佳的rhBMP-2洗脱支架组合物,并将其植入大鼠模型的临界大小的颅骨缺损中,在该模型中其具有出色的体内愈合能力。这些平台在组织再生领域具有巨大的潜力。通过将特定的治疗分子调节到感兴趣的组织,并利用不同的胶原基支架,可以开发出类似的系统来增强各种组织和器官的愈合。 (C)2014 Elsevier B.V.保留所有权利。

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