首页> 外文期刊>Journal of biomedical materials research, Part A >Porous Silk Fibroin 3-D Scaffolds For Delivery of Bone Morphogenetic Protein-2 In Vitro and In Vivo
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Porous Silk Fibroin 3-D Scaffolds For Delivery of Bone Morphogenetic Protein-2 In Vitro and In Vivo

机译:多孔丝素蛋白3-D支架,用于体外和体内递送骨形态发生蛋白2。

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摘要

Bone morphogenetic protein-2 (BMP-2) plays a key role in osteogenesis. Biomaterials used for the sustained delivery of BMP-2 in vivo have shown therapeutic benefits. In the present study, BMP-2 was loaded in porous silk fibroin scaffolds derived from silkworm cocoons (2.4 +- 0.14 |xg per scaffold). The release profile of BMP-2 under dynamic culture conditions (spinner flasks) showed that after 1 week in culture 25 percent of the initial BMP-2 was retained adsorbed to the scaffold; up to 4 weeks no additional BMP-2 was released. BMP-2 induced human bone marrow stromal cells (hMSCs) to undergo osteogenic differentiation when the seeded scaffolds were cultured in medium supplemented with osteogenic stimulants for 4 weeks, based on elevated alkaline phosphatase activity, calcium deposition, and transcript levels for bone sialoprotein, osteopontin, os-teocalcin, BMP-2, and cbfa-1. Micro-computed tomography revealed densely deposited mineral at the center of the scaffolds. In contrast, hMSCs cultured in control scaffolds (no BMP-2) exhibited limited osteogenesis. When implanted in critical sized cranial defects in mice, scaffolds loaded with BMP-2 and seeded with hMSCs resulted in significant bone ingrowth. These results were qualitatively similar to scaffolds loaded with BMP-2 but no hMSCs or with BMP-2 and hMSCs but not pregrown into bone-like tissue. Bone-related outcomes were improved when compared with the scaffold controls implanted without BMP-2. These studies illustrate the potential use of slow degrading silk fibroin 3-D scaffolds loaded with BMP-2, in combination with hMSCs, in osteogenesis studies in vitro and in vivo, and provide a new range of material properties for these applications.
机译:骨形态发生蛋白2(BMP-2)在成骨中起关键作用。用于体内持续递送BMP-2的生物材料已显示出治疗益处。在本研究中,将BMP-2装在衍生自蚕茧的多孔丝素蛋白支架中(每个支架2.4±0.14 | xg)。在动态培养条件下(旋转瓶),BMP-2的释放曲线显示,培养1周后,最初的BMP-2中有25%保留吸附在支架上;长达4周,没有释放额外的BMP-2。当将接种的支架在添加了成骨刺激剂的培养基中培养4周后,BMP-2诱导的人骨髓基质细胞(hMSC)经历成骨分化,这是基于碱性磷酸酶活性,钙沉积以及骨唾液蛋白,骨桥蛋白的转录水平升高,os-teocalcin,BMP-2和cbfa-1。微计算机断层扫描显示在支架中心密集沉积的矿物。相反,在对照支架(无BMP-2)中培养的hMSC表现出有限的成骨作用。当在小鼠中植入临界大小的颅骨缺损时,装有BMP-2并植入hMSC的支架会导致骨骼向内生长。这些结果在质量上与装有BMP-2但没有hMSC或没有BMP-2和hMSC但没有长成骨样组织的支架相似。与没有植入BMP-2的支架对照组相比,与骨相关的结局得到了改善。这些研究表明,在体外和体内成骨研究中,与BMSC-2结合的BMP-2慢速降解丝素蛋白3-D支架的潜在用途,为这些应用提供了一系列新的材料性能。

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