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Injectable polypeptide hydrogel/inorganic nanoparticle composites for bone tissue engineering

机译:用于骨组织工程的可注射多肽水凝胶/无机纳米颗粒复合材料

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摘要

The general concept of tissue engineering is to restore biological function by replacing defective tissues with implantable, biocompatible, and easily handleable cell-laden scaffolds. In this study, osteoinductive and osteoconductive super paramagnetic Fe3O4 nanoparticles (MNP) and hydroxyapatite (HAP) nanoparticles were incorporated into a di-block copolymer based thermo-responsive hydrogel, methoxy(polyethylene glycol)-polyalanine (mPA), at various concentrations to afford composite, injectable hydrogels. Incorporating nanoparticles into the thermo-responsive hydrogel increased the complex viscosity and decreased the gelation temperature of the starting hydrogel. Functionally, the integration of inorganic nanoparticles modulated bio-markers of bone differentiation and enhanced bone mineralization. Moreover, this study adopted the emerging method of using either a supplementary static magnetic field (SMF) or a moving magnetic field to elicit biological response. These results demonstrate that combining external (magnet) and internal (scaffold) magnetisms is a promising approach for bone regeneration.
机译:组织工程学的一般概念是通过用可植入,生物相容且易于处理的充满细胞的支架代替缺陷组织来恢复生物学功能。在这项研究中,将骨诱导性和骨传导性超顺磁性Fe3O4纳米颗粒(MNP)和羟基磷灰石(HAP)纳米颗粒以各种浓度掺入基于二嵌段共聚物的热响应水凝胶甲氧基(聚乙二醇)-聚丙氨酸(mPA)中,得到复合的可注射水凝胶。将纳米颗粒掺入热响应性水凝胶中增加了复数粘度并降低了起始水凝胶的胶凝温度。从功能上讲,无机纳米颗粒的整合调节了骨分化的生物标记并增强了骨矿化。此外,这项研究采用了一种新兴的方法,即使用补充静态磁场(SMF)或移动磁场来引发生物反应。这些结果表明,结合外部(磁体)和内部(支架)磁性是一种有希望的骨再生方法。

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