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Bone Morphogenic Protein-2 (rhBMP2)-Loaded Silk Fibroin Scaffolds to Enhance the Osteoinductivity in Bone Tissue Engineering

机译:骨形态发生蛋白2(rhBMP2)加载丝素蛋白支架,以增强骨组织工程中的骨诱导性。

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There is an increasing demand for formulations of silk fibroin (SF) scaffolds in biomedical applications. SF was crosslinked via glutaraldehyde with osteoinductive recombinant human bone morphogenic protein-2 (rhBMP2) of different ratios viz. (i) 3% SF with no rhBMP2 (SF), (ii) 3% SF with equal amount of rhBMP2 (SF+BMP2), and (iii) 12% SF with 3% of rhBMP2 (4SF+BMP2), and these solutions were used in electrospinning-based fabrication of nanoscaffolds for evaluating increased osteoinductive potential of SF scaffolds with rhBMP2. Stress–strain relationship suggested there is no loss in mechanical strength of fibers with addition of rhBMP2, and mechanical strength of scaffold was improved with increase in concentration of SF. rhBMP2 association increased the water retention capacity of scaffold as evident from swelling studies. Viability of hMSCs was found to be higher in conjugated scaffolds, and scaffolds do not exhibit any cytotoxicity towards guest cells. Cells were found to have higher alkaline phosphatase activity in conjugated scaffolds under in vitro and in vivo conditions which establishes the increased osteoinductivity of the novel construct. The scaffolds were found to be effective for in vivo bone formation as well.
机译:在生物医学应用中对丝素蛋白(SF)支架制剂的需求不断增加。 SF通过戊二醛与不同比例的骨诱导性重组人骨形态发生蛋白2(rhBMP2)交联。 (i)不包含rhBMP2(SF)的3%SF,(ii)含等量rhBMP2(SF + BMP2)的3%SF和(iii)含3%rhBMP2(4SF + BMP2)的12%SF该溶液用于基于静电纺丝的纳米支架制造中,以评估rhBMP2增强SF支架的骨诱导潜力。应力-应变关系表明,添加rhBMP2不会使纤维的机械强度降低,并且随着SF浓度的增加,支架的机械强度也会提高。从溶胀研究中可以明显看出,rhBMP2缔合增加了支架的保水能力。已发现在结合的支架中hMSC的活力更高,并且支架对客体细胞没有任何细胞毒性。发现在体外和体内条件下,细胞在缀合的支架中具有较高的碱性磷酸酶活性,这建立了新构建体的骨诱导性增加。发现该支架对于体内骨形成也是有效的。

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