Don Trong-Ming, Ma Chen-Han, Huang Yi-Cheng
Department of Chemical and Materials Engineering, Tamkang University, No. 151 Yingzhuan Rd., New Taipei City 251301, Taiwan.
Department of Food Science, National Taiwan Ocean University, No. 2 Beining Rd., Keelung City 20224, Taiwan.
Polymers (Basel). 2022 Dec 8;14(24):5382. doi: 10.3390/polym14245382.
When a wound forms due to any injuries, it should be covered with a functional wound dressing for accelerating wound healing and reducing infection. In this study, crosslinked ulvan/chitosan complex films were prepared with or without the addition of glycerol and chlorophyll, and their wound healing properties were evaluated for potential application in wound dressing. The results showed that the tensile strength and elongation at break of the prepared ulvan/chitosan complex films were 2.23-2.48 MPa and 83.8-108.5%, respectively. Moreover, their water vapor transmission rates (WVTRs) were in the range of 1791-2029 g/m-day, providing suitable environment for wound healing. Particularly, these complex films could release ulvan in situ in a short time, and the film with chlorophyll added had the highest release rate, reaching 62.8% after 20 min of releasing. In vitro studies showed that they were biocompatible toward NIH 3T3 and HaCaT cells, and promoted the migration of NIH 3T3 cells. These complex films could protect HaCaT cells from oxidative damage and reduce the production of reactive oxygen species (ROS); the addition of chlorophyll also effectively reduced the inflammatory response induced by LPS as found in the reduction in both NO and IL-6. Animal models showed that the complex films added with glycerol and chlorophyll could promote wound healing in the early stage, while accelerating the regeneration of dermal glands and collagen production. Briefly, these ulvan/chitosan complex films had good physiochemical properties and biological activity, and could accelerate wound healing both in vitro and in vivo.
当因任何损伤形成伤口时,应用功能性伤口敷料覆盖,以加速伤口愈合并减少感染。在本研究中,制备了添加或不添加甘油和叶绿素的交联岩藻聚糖/壳聚糖复合膜,并评估了它们在伤口敷料中的潜在应用的伤口愈合性能。结果表明,制备的岩藻聚糖/壳聚糖复合膜的拉伸强度和断裂伸长率分别为2.23 - 2.48 MPa和83.8 - 108.5%。此外,它们的水蒸气透过率(WVTRs)在1791 - 2029 g/m²·天范围内,为伤口愈合提供了适宜的环境。特别地,这些复合膜能在短时间内原位释放岩藻聚糖,添加叶绿素的膜释放速率最高,释放20分钟后达到62.8%。体外研究表明,它们对NIH 3T3和HaCaT细胞具有生物相容性,并促进NIH 3T3细胞的迁移。这些复合膜能保护HaCaT细胞免受氧化损伤并减少活性氧(ROS)的产生;添加叶绿素还能有效降低LPS诱导的炎症反应,如NO和IL - 6的减少所示。动物模型表明,添加甘油和叶绿素的复合膜能在早期促进伤口愈合,同时加速真皮腺的再生和胶原蛋白的产生。简而言之,这些岩藻聚糖/壳聚糖复合膜具有良好的理化性质和生物活性,能在体外和体内加速伤口愈合。