Kamenova Katya, Prancheva Anna, Stoyanova Stiliyana, Radeva Lyubomira, Tibi Ivanka Pencheva-El, Yoncheva Krassimira, Ravutsov Martin A, Marinova Maya K, Simeonov Svilen P, Mitova Simona, Eneva Rumyana, Zaharieva Maya M, Najdenski Hristo, Petrov Petar D
Institute of Polymers, Bulgarian Academy of Sciences, 1113 Sofia, Bulgaria.
Open Laboratory on Experimental Micro and Nano Mechanics (OLEM), Institute of Mechanics, Bulgarian Academy of Sciences, Acad. G. Bonchev Str. Block 4, 1113 Sofia, Bulgaria.
Gels. 2024 Feb 20;10(3):156. doi: 10.3390/gels10030156.
Hydrogels are superior wound dressings because they can provide protection and hydration of the wound, as well as the controlled release of therapeutic substances to aid tissue regeneration and the healing process. Hydrogels obtained from natural precursors are preferred because of their low cost, biocompatibility, and biodegradability. We describe the synthesis of novel functional hydrogels based on two natural products-citric acid (CA) and pentane-1,2,5-triol (PT, a product from lignocellulose processing) and poly(ethylene glycol) (PEG-600)-via an environment friendly approach. The hydrogels were prepared via monomer crosslinking through a polycondensation reaction at an elevated temperature in the absence of any solvent. The reagents were blended at three different compositions with molar ratios of hydroxyl (from PT and PEG) to carboxyl (from CA) groups of 1:1, 1:1.4, and 1.4:1, respectively. The effect of the composition on the physicomechanical properties of materials was investigated. All hydrogels exhibited pH-sensitive behavior, while the swelling degree and elastic modulus were dependent on the composition of the polymer network. The proteolytic enzyme serratiopeptidase (SER) was loaded into a hydrogel via physical absorption as a model drug. The release profile of SER and the effects of the enzyme on healthy skin cells were assessed. The results showed that the hydrogel carrier could provide the complete release of the loaded enzyme.
水凝胶是优质的伤口敷料,因为它们能够为伤口提供保护和保湿作用,还能控制治疗物质的释放,以促进组织再生和伤口愈合过程。从天然前体获得的水凝胶因其低成本、生物相容性和生物降解性而更受青睐。我们描述了一种基于两种天然产物——柠檬酸(CA)和戊烷 - 1,2,5 - 三醇(PT,一种木质纤维素加工产物)以及聚乙二醇(PEG - 600)——通过环境友好方法合成新型功能水凝胶的过程。这些水凝胶是在无任何溶剂的情况下,通过在高温下的缩聚反应使单体交联来制备的。试剂按三种不同组成进行混合,羟基(来自PT和PEG)与羧基(来自CA)基团的摩尔比分别为1:1、1:1.4和1.4:1。研究了组成对材料物理机械性能的影响。所有水凝胶都表现出pH敏感行为,而溶胀度和弹性模量取决于聚合物网络的组成。将蛋白水解酶沙雷肽酶(SER)作为模型药物通过物理吸附加载到水凝胶中。评估了SER的释放曲线以及该酶对健康皮肤细胞的影响。结果表明,水凝胶载体能够使负载的酶完全释放。