Levengood Sheeny Lan, Erickson Ariane E, Chang Fei-Chien, Zhang Miqin
Department of Materials Science & Engineering, University of Washington, Seattle, Washington 98195, USA.
J Mater Chem B. 2017 Mar 7;5(9):1822-1833. doi: 10.1039/C6TB03223K. Epub 2017 Feb 3.
Dermal wounds, both acute and chronic, represent a significant clinical challenge and therefore the development of novel biomaterial-based skin substitutes to promote skin repair is essential. Nanofibers have garnered attention as materials to promote skin regeneration due to the similarities in morphology and dimensionality between nanofibers and native extracellular matrix proteins, which are critical in guiding cutaneous wound healing. Electrospun chitosan-poly(caprolactone) (CPCL) nanofiber scaffolds, which combine the important intrinsic biological properties of chitosan and the mechanical integrity and stability of PCL, were evaluated as skin tissue engineering scaffolds using a mouse cutaneous excisional skin defect model. Gross assessment of wound size and measurement of defect recovery over time as well as histological evaluation of wound healing showed that CPCL nanofiber scaffolds increased wound healing rate and promoted more complete wound closure as compared with Tegaderm, a commercially available occlusive dressing. CPCL nanofiber scaffolds represent a biomimetic approach to skin repair by serving as an immediately available provisional matrix to promote wound closure. These nanofiber scaffolds may have significant potential as a skin substitute or as the basis for more complex skin tissue engineering constructs involving integration with biologics.
急性和慢性皮肤伤口都是重大的临床挑战,因此开发新型的基于生物材料的皮肤替代物以促进皮肤修复至关重要。由于纳米纤维与天然细胞外基质蛋白在形态和尺寸上具有相似性,而这些特性对于指导皮肤伤口愈合至关重要,因此纳米纤维作为促进皮肤再生的材料受到了关注。使用小鼠皮肤切除性皮肤缺损模型,对结合了壳聚糖重要内在生物学特性和聚己内酯(PCL)机械完整性与稳定性的静电纺丝壳聚糖-聚己内酯(CPCL)纳米纤维支架作为皮肤组织工程支架进行了评估。对伤口大小的总体评估、随时间对缺损恢复情况的测量以及伤口愈合的组织学评估表明,与市售的封闭性敷料Tegaderm相比,CPCL纳米纤维支架提高了伤口愈合速度并促进了更完全的伤口闭合。CPCL纳米纤维支架通过作为促进伤口闭合的即时可用临时基质,代表了一种仿生的皮肤修复方法。这些纳米纤维支架作为皮肤替代物或作为涉及与生物制剂整合的更复杂皮肤组织工程构建体的基础可能具有巨大潜力。