Tavakoli Javad, Tang Youhong
Medical Device Research Institute, School of Computer Science, Engineering and Mathematics, Flinders University, South Australia 5042, Australia.
Centre for NanoScale Science & Technology, School of Computer Science, Engineering and Mathematics, Flinders University, South Australia 5042, Australia.
Mater Sci Eng C Mater Biol Appl. 2017 Aug 1;77:318-325. doi: 10.1016/j.msec.2017.03.272. Epub 2017 Mar 29.
Hydrogel/honey hybrids manifest an attractive design with an exclusive therapeutic property that promotes wound healing process. The greater the concentration of honey within the formulation, the better the biomedical properties that will be achieved. However, an increase in the percentage of honey can negatively affect the physico-chemical and mechanical properties of hybrid hydrogels. The need exists, therefore, to prepare wound dressings that contain high honey density with optimal biomedical, mechanical and physicochemical properties. In this study, a simple method for the preparation of a highly concentrated honey/PVA hybrid hydrogel with borax as the crosslinking agent is reported. Comprehensive evaluations of the morphology, swelling kinetics, permeability, bio-adhesion, mechanical characteristics, cytotoxicity, antibacterial property, cell proliferation ability and their controlling release properties were conducted as a function of crosslinking density. All the borax-induced hydrogels showed acceptable biocompatibility, and the incorporation of 1% borax in the hydrogel formulation produced optimal behaviours for wound addressing applications.
水凝胶/蜂蜜混合物呈现出一种具有独特治疗特性的诱人设计,可促进伤口愈合过程。制剂中蜂蜜的浓度越高,所实现的生物医学性能就越好。然而,蜂蜜百分比的增加会对混合水凝胶的物理化学和机械性能产生负面影响。因此,需要制备含有高蜂蜜密度且具有最佳生物医学、机械和物理化学性能的伤口敷料。在本研究中,报道了一种以硼砂作为交联剂制备高浓度蜂蜜/PVA混合水凝胶的简单方法。作为交联密度的函数,对形态、溶胀动力学、渗透性、生物粘附性、机械特性、细胞毒性、抗菌性能、细胞增殖能力及其控释性能进行了综合评估。所有硼砂诱导的水凝胶均表现出可接受的生物相容性,并且在水凝胶制剂中加入1%的硼砂可产生适用于伤口处理应用的最佳性能。