Proteomics Research Center, Shahid Beheshti University of Medical Science , Tehran , Iran.
Artif Cells Nanomed Biotechnol. 2014 Jun;42(3):210-6. doi: 10.3109/21691401.2013.800080. Epub 2013 Aug 2.
Unrestricted somatic stem cells (USSCs) loaded in nanofibrous PHBV scaffold can be used for skin regeneration when grafted into full-thickness skin defects of rats. Nanofibrous PHBV scaffolds were designed using electrospinning method and then, modified with the immobilized collagen via the plasma method. Afterward, the scaffolds were evaluated using scanning electron microscopy, physical and mechanical assays. In this study; nanofibrous PHBV scaffolds loaded with and without USSCs were grafted into the skin defects. The wounds were subsequently investigated at 21 days after grafting. Results of mechanical and physical analyses showed good resilience and compliance to movement as a skin graft. In animal models; all study groups excluding the control group exhibited the most pronounced effect on wound closure, with the statistically significant improvement in wound healing being seen on post-operative Day 21. Histological and immunostaining examinations of healed wounds from all groups, especially the groups treated with stem cells, showed a thin epidermis plus recovered skin appendages in the dermal layer. Thus, the graft of collagen-coated nanofibrous PHBV scaffold loaded with USSC showed better results during the healing process of skin defects in rat model.
负载非限制性体干细胞(USSCs)的纳米纤维 PHBV 支架可用于大鼠全层皮肤缺损的皮肤再生,当将其移植到皮肤缺损部位时。纳米纤维 PHBV 支架采用静电纺丝法设计,然后通过等离子体法用固定化胶原蛋白进行修饰。之后,使用扫描电子显微镜、物理和机械测试对支架进行了评估。在这项研究中,将负载和未负载 USSCs 的纳米纤维 PHBV 支架移植到皮肤缺损部位。在移植后 21 天,对伤口进行了后续研究。机械和物理分析结果表明,作为皮肤移植物,具有良好的弹性和顺应性。在动物模型中,除对照组外,所有研究组对伤口闭合的影响最为明显,第 21 天术后观察到伤口愈合有统计学意义的改善。所有组(尤其是干细胞治疗组)愈合伤口的组织学和免疫染色检查显示,表皮薄,真皮层中恢复的皮肤附属物。因此,负载 USSC 的胶原蛋白涂覆纳米纤维 PHBV 支架的移植在大鼠模型的皮肤缺损愈合过程中显示出更好的效果。