低温印刷的具有稳定和分级多孔结构的壳聚糖/生物玻璃柔性支架,用于伤口愈合。
Cryogenically printed flexible chitosan/bioglass scaffolds with stable and hierarchical porous structures for wound healing.
机构信息
The second Clinical Medical School, Nanchang University, Nanchang, Jiangxi 330006, People's Republic of China.
The first Clinical Medical School, Nanchang University, Nanchang, Jiangxi 330006, People's Republic of China.
出版信息
Biomed Mater. 2020 Nov 27;16(1):015004. doi: 10.1088/1748-605X/abb2d7.
Wound healing is a dynamic and well-orchestrated process that can be promoted by creating an optimal environment with wound dressing. An ideal wound dressing material should possess a suitable matrix, structure and bioactive components, functioning synergistically to accelerate wound healing. Wound dressings that allow reproducibility and customizability are highly desirable in clinical practice. In this study, using chitosan (CS) as the matrix and bioglass (BG) as the biological component, a spatially designed dressing scaffold was fabricated from a home-made cryogenic printing system. The micro- and macro-structures of the scaffold were highly controllable and reproducible. The printed scaffold exhibited interconnected and hierarchical pore structures, as well as good flexibility and water absorption capacity, and these properties were not affected by the content of BG. Nevertheless, when the content of BGs exceeded 20% that of CS, the tension strength and elongation rate reduced, but in vitro antibacterial, cell proliferation and migration performance were enhanced. In vivo examinations revealed that the composite scaffold significantly promoted wound healing process, with the group having 30% bioglass showing better wound closure, neovascularization and collagen deposition than other groups. These results indicate that the 3D printed CS/BG composite scaffold is a promising dressing material that accelerates wound healing.
伤口愈合是一个动态且协调良好的过程,可以通过使用伤口敷料来创造最佳环境来促进。理想的伤口敷料材料应具有合适的基质、结构和生物活性成分,协同作用以加速伤口愈合。在临床实践中,能够实现可重复性和定制化的伤口敷料是非常理想的。在本研究中,我们使用壳聚糖 (CS) 作为基质和生物玻璃 (BG) 作为生物成分,通过自制的低温打印系统制备了具有空间设计的敷料支架。支架的微观和宏观结构具有高度的可控性和可重复性。打印支架具有相互连接的分级孔结构,以及良好的柔韧性和吸水性,这些性质不受 BG 含量的影响。然而,当 BG 的含量超过 CS 的 20%时,拉伸强度和伸长率降低,但体外抗菌、细胞增殖和迁移性能增强。体内检查表明,复合支架显著促进了伤口愈合过程,其中含有 30%生物玻璃的组在伤口闭合、新生血管形成和胶原沉积方面优于其他组。这些结果表明,3D 打印的 CS/BG 复合材料支架是一种有前途的加速伤口愈合的敷料材料。