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Feasibility Study of Tissue Transglutaminase for Self-Catalytic Cross-Linking of Self-Assembled Collagen Fibril Hydrogel and Its Promising Application in Wound Healing Promotion

机译:组织转谷氨酰胺酶用于自组装胶原原纤维水凝胶自催化交联的可行性研究及其在促进伤口愈合中的应用前景

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摘要

Collagen-based bio-hydrogels are undoubtedly a hot spot in the development of biological dressings for wound healing promotion. Herein, glutamine transaminase (TGase), a biological nontoxic cross-linker with high specific activity and reaction rate under mild conditions, was utilized for the self-catalytic cross-linking of the regenerated collagen (COL) fibril hydrogel fabricated through a molecular self-assembly method. The results showed that the natural triple helical conformation of COL remained completely integrated after self-catalytic cross-linking TGase, which was definitively the fundamental for maintaining its superior bioactivity. It was worth noting that TGase could promote the self-assembly process of COL building blocks into a higher order D-period cross-striated structure. Also, the reconstructed TGase cross-linked COL fibrils exhibited a higher degree of interfiber entanglements with more straight and longer fibrils. Meanwhile, the thermal stability of COL was significantly improved after introducing TGase. Besides, the cytocompatibility analysis suggested that the regenerated COL fibril hydrogel showed excellent cell growth activity and proliferation ability when the dosage of TGase is less than 40 U/g. Further, animal experiments indicated that the targeted COL fibril hydrogel could significantly promote skin wound healing, exhibiting better capacity of skin tissue for regeneration than the COL hydrogel untreated as expected. Therefore, the reconstructed TGase cross-linked COL fibril hydrogel could serve as a novel soft material for wound healing promotion.
机译:基于胶原的生物水凝胶无疑是促进伤口愈合的生物敷料开发中的热点。本文将谷氨酰胺转氨酶(TGase),一种在温和条件下具有高比活性和反应速率的生物无毒交联剂,用于通过分子自组装制备的再生胶原(COL)原纤维水凝胶的自催化交联。组装方法。结果表明,自催化交联TGase后,COL的天然三螺旋构象仍完全整合,这绝对是维持其优异生物活性的基础。值得注意的是,TGase可以促进COL构建基块的自组装过程成为更高阶的D周期横纹结构。同样,重构的TGase交联的COL原纤维表现出较高程度的纤维间缠结,具有更直和更长的原纤维。同时,引入TGase后,COL的热稳定性得到显着提高。细胞相容性分析表明,当TGase用量小于40 U / g时,再生的COL原纤维水凝胶具有优异的细胞生长活性和增殖能力。此外,动物实验表明,与未按预期处理的COL水凝胶相比,靶向的COL原纤维水凝胶可显着促进皮肤伤口愈合,表现出更好的皮肤组织再生能力。因此,重建的TGase交联的COL原纤维水凝胶可作为促进伤口愈合的新型软材料。

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