College of Pharmacy, Hanyang University, 55 Hanyangdaehak-ro, Sangnok-gu, Ansan 15588, South Korea.
College of Pharmacy, Yeungnam University, 214-1, Dae-Dong, Gyongsan 712-749, South Korea.
Int J Biol Macromol. 2022 Nov 30;221:1572-1579. doi: 10.1016/j.ijbiomac.2022.09.049. Epub 2022 Sep 13.
This study aimed to develop a Lactobacillus plantarum (L. plantarum)-loaded dual-layer wound dressing (DLD) with excellent wound recovery and mechanical properties. L. plantarum-loaded DLD was fabricated by covering the hydrogel (inner layer) with a hydrocolloid (external layer). The hydrocolloid was manufactured by the hot-melt method, consisting of liquid paraffin, polyisobutylene, styrene-isoprene-styrene, and sodium carboxymethylcellulose (12:20:25:43, w/w/w/w). In contrast, the hydrogel was fabricated by the freeze-and-thaw method to load heat-labile L. plantarum. Various non-ionic materials have been investigated to select appropriate hydrogel components. The hydrogel composed of L. plantarum stock solution, guar gum, and polyvinyl alcohol (10:2:10, w/w/w) was chosen for its excellent swelling capacity and mechanical properties. As a result, heat-labile L. plantarum was successfully loaded into the guar-gum-based DLD. Moreover, guar gum-based DLD containing L. plantarum exhibited significantly enhanced swelling capacity and elasticity compared to single hydrogel layer (swelling capacity: DLD, 920.7 ± 32.4 % vs. hydrogel, 282.2 ± 6.5 %; elastic modulus: DLD, 2.9 ± 0.3 × 10 N/mm vs. hydrogel, 4.2. ± 0.7 × 10 N/mm). The wound recovery test using Pseudomonas aeruginosa-infected animal model and histological profiles confirmed guar gum-based DLD containing L. plantarum to elicit accelerated wound recovery with complete re-epithelialization compared to commercial product and non-treated (recovery rate at Day 3: DLD, 67.8 ± 6.2 % vs. commercial product, 30.4 ± 11.7 % vs. non-treated, 14.2 ± 7.5 %). Therefore, L. plantarum-loaded DLD is an effective system for wound treatment.
本研究旨在开发一种具有优异伤口恢复和机械性能的植物乳杆菌(L. plantarum)双层载药伤口敷料(DLD)。通过在水凝胶(内层)上覆盖水胶体(外层)来制备载有 L. plantarum 的 DLD。水胶体通过热熔法制造,由液体石蜡、聚异丁烯、苯乙烯-异戊二烯-苯乙烯和羧甲基纤维素钠(12:20:25:43,w/w/w/w)组成。相比之下,水凝胶是通过冻融法制备以负载不耐热的 L. plantarum。研究了各种非离子材料以选择合适的水凝胶成分。选择了由 L. plantarum 储备溶液、瓜尔胶和聚乙烯醇(10:2:10,w/w/w)组成的水凝胶,因为其具有出色的溶胀能力和机械性能。结果,不耐热的 L. plantarum 成功负载到瓜尔胶基 DLD 中。此外,与单一水凝胶层相比,载有 L. plantarum 的瓜尔胶基 DLD 表现出显著增强的溶胀能力和弹性(溶胀能力:DLD,920.7 ± 32.4% 比水凝胶,282.2 ± 6.5%;弹性模量:DLD,2.9 ± 0.3×10 N/mm 比水凝胶,4.2. ± 0.7×10 N/mm)。使用铜绿假单胞菌感染动物模型和组织学特征进行的伤口恢复测试证实,与商业产品和未处理组相比,载有 L. plantarum 的瓜尔胶基 DLD 可加速伤口恢复并实现完全再上皮化(第 3 天的恢复率:DLD,67.8 ± 6.2% 比商业产品,30.4 ± 11.7% 比未处理组,14.2 ± 7.5%)。因此,载有 L. plantarum 的 DLD 是一种有效的伤口治疗系统。