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Bioactive injectable hydrogel conjugated with a synthetic peptide for bone regeneration

机译:与合成肽偶联的生物活性注射水凝胶,用于骨骼再生

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Hard tissue engineering is a developing field pursued at satisfying the needs for the restoration of damaged bone or missed teeth. To achieve the aim, an ideal three-dimensional scaffold should need to provide a mimetic environment according to the original extracellular matrix of hard tissues. Because it is not sufficient to regenerate the targeted tissues with scaffold alone, however, design and fabrication of proper scaffold for bone regenerative engineering have been considered that used with bioactive molecules such as peptides. Herein, the bioactive peptide (Pep) for biomineralization was identified from Osteopontin (OPN) described as a major non-collagenous protein in bone, which influences bone homeostasis both by promoting differentiation of osteoblasts and by enhancing osteoblast activity. In this study, we investigated in vivo long-term localization and effective hard tissue regeneration of human mesenchymal stem cells using enzymatically triggered conjugating system. In brief, the bioactive hydrogels were prepared by conjugating with Pep including the tyrosine residue via an enzyme-mediated reaction, and the cells were incorporated simultaneously into the gels. Taken together, the injectable osteoinductive scaffold might be a potent bone regenerative material due to easier structure formation and more adjustable release of bioactive molecules than conventional regenerative biomaterials.
机译:硬组织工程学是一个不断发展的领域,致力于满足受损骨或缺牙修复的需求。为了达到这个目的,理想的三维支架应根据硬组织的原始细胞外基质提供一个模拟环境。然而,由于仅靠支架不足以使靶组织再生,因此,已经考虑了用于骨再生工程的适当支架的设计和制造,该支架与诸如肽的生物活性分子一起使用。在此,从骨桥蛋白(OPN)中鉴定出用于生物矿化的生物活性肽(Pep),所述骨桥蛋白被描述为骨中的主要非胶原蛋白,其通过促进成骨细胞的分化和增强成骨细胞的活性来影响骨稳态。在这项研究中,我们调查了人类间质干细胞的体内长期定位和有效的硬组织再生,采用酶促偶联系统。简而言之,通过经由酶介导的反应与包括酪氨酸残基的Pep缀合来制备生物活性水凝胶,并将细胞同时掺入凝胶中。总体而言,可注射的骨诱导性支架可能是有效的骨再生材料,因为它比传统的再生生物材料更容易形成结构,并且生物活性分子的释放调节性更强。

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