Department of Biomaterial Engineering, Tonekabon Branch, Islamic Azad University, Tonekabon, Iran
J Biomed Nanotechnol. 2013 Sep;9(9):1471-82. doi: 10.1166/jbn.2013.1639.
In this study, we have evaluated the wound-healing effects of unrestricted somatic stem cells loaded in chitosan-cross linked PHBV nanofibrous scaffold, implanted into the full thickness skin defects of rats. Afterwards, the scaffolds were evaluated by structural, microscopic, physical and mechanical assays and cell culture analyses. Defects were treated with the scaffolds without and with USSCs. MTT assay, immunostaining, and wound pathology were performed for groups twenty one days after implantation. SEM images showed the average diameter of about 100 nm for the nanofibrous scaffolds, increasing up to 500 nm after chitosan-crosslinking. Results of physical and mechanical analyses also showed a good resilience and compliance with movement as a skin graft. Cellular experiments showed a better cell adhesion, growth and proliferation inside the cross-linked nanofibrous scaffolds compared to un-cross linked ones. In animal models, all groups, excluding the control group, exhibited the most pronounced effect on wound closure, with the statistically significant improvement in wound healing being seen at post-operative day 21. Histological and immunostaining examinations of healed wounds from all groups, especially the groups treated with stem cells. Thus, the grafting of chitosan-cross-linked nanofibrous scaffold loaded with USSC showed better results during the healing process of skin defects in rat models.
在这项研究中,我们评估了负载在壳聚糖交联 PHBV 纳米纤维支架中的无限制体干细胞在大鼠全层皮肤缺损中的愈合效果。随后,通过结构、微观、物理和机械分析以及细胞培养分析对支架进行了评估。用没有和有 USSC 的支架处理缺陷。在植入后 21 天对各组进行 MTT 测定、免疫染色和伤口病理学检查。SEM 图像显示,纳米纤维支架的平均直径约为 100nm,壳聚糖交联后增加到 500nm。物理和机械分析的结果还表明,作为皮肤移植物,它具有良好的弹性和顺应性。细胞实验表明,与未交联的支架相比,交联纳米纤维支架内的细胞粘附、生长和增殖更好。在动物模型中,除对照组外,所有组在伤口闭合方面均表现出最显著的效果,在术后 21 天观察到伤口愈合的统计学显著改善。所有组(特别是用干细胞处理的组)的愈合伤口的组织学和免疫染色检查显示,壳聚糖交联纳米纤维支架负载 USSC 的移植在大鼠模型皮肤缺损的愈合过程中显示出更好的效果。