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具有抗菌和伤口愈合活性的 3D 打印中空通道水凝胶支架。

3D printed hollow channeled hydrogel scaffolds with antibacterial and wound healing activities.

机构信息

Marshall Laboratory of Biomedical Engineering, Shenzhen University, Shenzhen 518060, People's Republic of China.

Guangdong Key Laboratory for Biomedical Measurements and Ultrasound Imaging, School of Biomedical Engineering, Shenzhen University Medical School, Shenzhen University, Shenzhen 518060, People's Republic of China.

出版信息

Biomed Mater. 2023 Jun 5;18(4). doi: 10.1088/1748-605X/acd977.

Abstract

The development of hydrogel based scaffold with the capability of enhanced antibacterial effects and wound healing is the promising strategy for the treatment of wound tissues with bacterial infection. Herein, we fabricated a hollow channeled hydrogel scaffold based on the mixture of dopamine modified alginate (Alg-DA) and gelatin via co-axial 3D printing for the treatment of bacterial-infected wound. The scaffold was crosslinked by copper/calcium ions, which could enhance the structural stability and mechanical properties. Meanwhile, copper ions crosslinking endowed the scaffold with good photothermal effects. The photothermal effect and copper ions showed excellent antibacterial activity against both Gram-positive () and Gram-negative () bacteria. Moreover, the hollow channels and the sustained released copper ions could stimulate angiogenesis and accelerate wound healing process. Thus, the prepared hollow channeled hydrogel scaffold might be a potential candidate for promoting wound healing application.

摘要

基于水凝胶的支架的开发具有增强的抗菌效果和伤口愈合能力,这是治疗细菌感染的伤口组织的有前途的策略。在此,我们通过同轴 3D 打印技术,将多巴胺修饰的海藻酸钠(Alg-DA)和明胶混合,制备了一种具有中空通道的水凝胶支架,用于治疗细菌感染的伤口。支架通过铜/钙离子交联,这可以增强结构稳定性和机械性能。同时,铜离子交联赋予支架良好的光热效应。光热效应和铜离子对革兰氏阳性菌()和革兰氏阴性菌()都表现出优异的抗菌活性。此外,中空通道和持续释放的铜离子可以刺激血管生成并加速伤口愈合过程。因此,所制备的中空通道水凝胶支架可能是促进伤口愈合应用的潜在候选物。

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