材料科学
哈卡特
明胶
复合数
伤口愈合
生物相容性
虾青素
生物材料
壳聚糖
化学工程
高分子化学
体外
复合材料
纳米技术
化学
有机化学
生物化学
外科
冶金
医学
工程类
类胡萝卜素
作者
Mahshid Monavari,Shahin Homaeigohar,Rucha Medhekar,Qaisar Nawaz,Mehran Monavari,Kai Zheng,Aldo R. Boccaccını
标识
DOI:10.1021/acsami.2c23252
摘要
In this study, a wound dressing composed of an alginate dialdehyde–gelatin (ADA-GEL) hydrogel incorporated by astaxanthin (ASX) and 70B (70:30 B2O3/CaO in mol %) borate bioactive glass (BBG) microparticles was developed through 3D printing. ASX and BBG particles stiffened the composite hydrogel construct and delayed its in vitro degradation compared to the pristine hydrogel construct, mainly due to their cross-linking role, likely arising from hydrogen bonding between the ASX/BBG particles and ADA-GEL chains. Additionally, the composite hydrogel construct could hold and deliver ASX steadily. The composite hydrogel constructs codelivered biologically active ions (Ca and B) and ASX, which should lead to a faster, more effective wound-healing process. As shown through in vitro tests, the ASX-containing composite hydrogel promoted fibroblast (NIH 3T3) cell adhesion, proliferation, and vascular endothelial growth factor expression, as well as keratinocyte (HaCaT) migration, thanks to the antioxidant activity of ASX, the release of cell-supportive Ca2+ and B3+ ions, and the biocompatibility of ADA-GEL. Taken together, the results show that the ADA-GEL/BBG/ASX composite is an attractive biomaterial to develop multipurposed wound-healing constructs through 3D printing.
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