Department of Pharmacy, University of Naples Federico II, Via D. Montesano 49, 80131 Naples, Italy.
Department of Translational Medical Sciences, University of Naples Federico II, Via S. Pansini 5, 80131 Naples, Italy.
Carbohydr Polym. 2015 Oct 20;131:407-14. doi: 10.1016/j.carbpol.2015.05.081. Epub 2015 Jun 16.
In this paper we propose polysaccharide hydrogels combining alginate (ALG) and hyaluronan (HA) as biofunctional platform for dermal wound repair. Hydrogels produced by internal gelation were homogeneous and easy to handle. Rheological evaluation of gelation kinetics of ALG/HA mixtures at different ratios allowed understanding the HA effect on ALG cross-linking process. Disk-shaped hydrogels, at different ALG/HA ratio, were characterized for morphology, homogeneity and mechanical properties. Results suggest that, although the presence of HA does significantly slow down gelation kinetics, the concentration of cross-links reached at the end of gelation is scarcely affected. The in vitro activity of ALG/HA dressings was tested on adipose derived multipotent adult stem cells (Ad-MSC) and an immortalized keratinocyte cell line (HaCaT). Hydrogels did not interfere with cell viability in both cells lines, but significantly promoted gap closure in a scratch assay at early (1 day) and late (5 days) stages as compared to hydrogels made of ALG alone (p<0.01 and 0.001 for Ad-MSC and HaCaT, respectively). In vivo wound healing studies, conducted on a rat model of excised wound indicated that after 5 days ALG/HA hydrogels significantly promoted wound closure as compared to ALG ones (p<0.001). Overall results demonstrate that the integration of HA in a physically cross-linked ALG hydrogel can be a versatile strategy to promote wound healing that can be easily translated in a clinical setting.
本文提出了一种结合海藻酸钠(ALG)和透明质酸(HA)的多糖水凝胶,作为皮肤伤口修复的生物功能平台。通过内部凝胶化制备的水凝胶是均匀的,易于处理。不同比例的 ALG/HA 混合物的凝胶化动力学流变学评估有助于理解 HA 对 ALG 交联过程的影响。不同 ALG/HA 比例的圆盘状水凝胶进行了形态、均一性和力学性能的表征。结果表明,尽管 HA 的存在显著减缓了凝胶化动力学,但凝胶化结束时达到的交联浓度几乎不受影响。ALG/HA 敷料的体外活性在脂肪来源的多能成体干细胞(Ad-MSC)和永生化角质形成细胞系(HaCaT)上进行了测试。水凝胶在两种细胞系中均不影响细胞活力,但与单独的 ALG 水凝胶相比,在划痕实验中早期(1 天)和晚期(5 天)显著促进了缝隙闭合(Ad-MSC 和 HaCaT 的 p<0.01 和 0.001)。在切除伤口的大鼠模型上进行的体内伤口愈合研究表明,与 ALG 水凝胶相比,ALG/HA 水凝胶在 5 天后显著促进了伤口闭合(p<0.001)。总体结果表明,将 HA 整合到物理交联的 ALG 水凝胶中可以成为促进伤口愈合的一种多功能策略,在临床环境中易于转化。