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Gelatin Templated Polypeptide Co-Cross-Linked Hydrogel for Bone Regeneration

机译:明胶模板多肽共传十字水凝胶用于骨再生

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Polypeptides with short chains of amino acid monomers have been widely applied in the clinic because of their various biological functions. However, the easily-inactivated characteristics and burst releasing of the peptides limit their application in vivo. Here, a novel osteogenic polypeptide hydrogel (GelMA-c-OGP) is created by co-cross-linking template photo-cross-linked gelatin (GelMA) with photo-cross-linkable osteogenic growth peptides (OGP) using ultraviolet radiation. GelMA enables the formation of hydrogel with photo-cross-linkable OGP with good mechanical properties and also promotes bone regeneration. GelMA-c-OGP hydrogel accelerates the bone formation procedure of osteogenic precursor cells by significantly enhancing the expression of osteogenic-related genes BMP-2, OCN, and OPN, and increasing the precipitation of calcium salts in osteoblasts. Similarly, GelMA-c-OGP hydrogel promotes bone regeneration in vivo. Furthermore, it is observed that more collagen fibers connect cortical bones in the GelMA-c-OGP implanted group than the control group by hematoxylin-eosin and immunohistochemical staining of Collagen I and TGF-beta. The co-cross-linked OGP polypeptide converts from liquid to solid hydrogel with transient UV light in situ, which also can strengthen the mechanical property of the defect bone and avoid burst osteogenic peptide, releasing during the bone defect healing period. Overall, this hydrogel delivering system has a significant impact on bone defect healing compared with traditional methods.
机译:由于其各种生物学功能,氨基酸单体链中具有短链的多肽在临床中被广泛应用于临床中。然而,肽的易于活化的特性和爆裂释放限制其在体内的应用。这里,通过使用紫外线辐射共同交联模板光交联的明胶(GELMA)通过与光交联的成骨生长肽(OGP)共同连接的模板光交联的明胶(GELMA)产生新的骨质发生多肽水凝胶(GELMA-C-OGP)。 GELMA能够形成具有光交联的OGP的水凝胶,具有良好的机械性能,并且还促进骨再生。 GELMA-C-OGP水凝胶通过显着增强成骨相关基因BMP-2,OCN和OPN的表达,并增加成骨细胞中钙盐的沉淀来加速成骨前体细胞的骨形成程序。类似地,凝胶-C-OGP水凝胶促进体内骨再生。此外,观察到,更多的胶原纤维在凝胶蛋白-eosin和胶原I和TGF-β的免疫组化染色和免疫组化染色中比对照组连接到GELMA-C-OGP植入组中的皮质骨。与瞬时UV光原位的共传十字连接的OGP多肽转化为固体水凝胶,其也可以增强缺陷骨的力学性能并避免突发的骨质肽,在骨缺损愈合期间释放。总的来说,与传统方法相比,这种水凝胶输送系统对骨缺损愈合具有显着影响。

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