Department of Cell Biology, Jinan University, Guangzhou 510632, China.
Department of Molecular, Cell, and Developmental Biology, University of California Los Angeles, Los Angeles, California 90024, United States.
ACS Biomater Sci Eng. 2024 May 13;10(5):3188-3202. doi: 10.1021/acsbiomaterials.4c00019. Epub 2024 Apr 9.
Chronic wound repair is a clinical treatment challenge. The development of multifunctional hydrogels is of great significance in the key aspects of treating chronic wounds, including reducing oxidative stress, promoting angiogenesis, and improving the natural remodeling of extracellular matrix and immune regulation. In this study, we prepared a composite hydrogel, sodium alginate (SA)@MnO/recombinant humanized collagen III (RHC)/mesenchymal stem cells (MSCs), composed of SA, MnO nanoparticles, RHC, and MSCs. The hydrogel has high mechanical properties and good biocompatibility. In vitro, SA@MnO/RHC/MSCs hydrogel effectively enhanced the formation of intricate tubular structures and angiogenesis and showed synergistic effects on cell proliferation and migration. In vivo, the SA@MnO/RHC/MSCs hydrogel enhanced diabetes wound healing, rapid re-epithelization, favorable collagen deposition, and abundant wound angiogenesis. These findings demonstrated that the combined effects of SA, MnO, RHC, and MSCs synergistically accelerate healing, resulting in a reduced healing time. These observed healing effects demonstrated the potential of this multifunctional hydrogel to transform chronic wound care and improve patient outcomes.
慢性创面修复是临床治疗的一大挑战。多功能水凝胶的发展对于治疗慢性创面的关键方面具有重要意义,包括减轻氧化应激、促进血管生成、改善细胞外基质的自然重塑和免疫调节。在本研究中,我们制备了一种复合水凝胶,由海藻酸钠(SA)@MnO/重组人源化胶原蛋白 III(RHC)/间充质干细胞(MSCs)组成,该水凝胶具有良好的机械性能和生物相容性。体外实验结果表明,SA@MnO/RHC/MSCs 水凝胶可有效促进复杂管状结构的形成和血管生成,并对细胞增殖和迁移具有协同作用。体内实验结果表明,SA@MnO/RHC/MSCs 水凝胶可促进糖尿病创面愈合,加快再上皮化,促进胶原沉积,增加创面血管生成。这些结果表明,SA、MnO、RHC 和 MSCs 的联合作用可协同加速创面愈合,缩短愈合时间。这些观察到的愈合效果表明,这种多功能水凝胶具有改变慢性创面护理和改善患者预后的潜力。