Kaviani Maryam, Geramizadeh Bita
Transplant Research Center, Shiraz University of Medical Sciences, Shiraz, Iran.
Curr Stem Cell Res Ther. 2025;20(1):2-8. doi: 10.2174/011574888X291345240110102648.
Nanotechnology seems to provide solutions to the unresolved complications in skin tissue engineering. According to the broad function of nanoparticles, this review article is intended to build a perspective for future success in skin tissue engineering. In the present review, recent studies were reviewed, and essential benefits and challenging issues regarding the application of nanoparticles in skin tissue engineering were summarized. Previous studies indicated that nanoparticles can play essential roles in the improvement of engineered skin. Bio-inspired design of an engineered skin structure first needs to understand the native tissue and mimic that in laboratory conditions. Moreover, a fundamental comprehension of the nanoparticles and their related effects on the final structure can guide researchers in recruiting appropriate nanoparticles. Attention to essential details, including the designation of nanoparticle type according to the scaffold, how to prepare the nanoparticles, and what concentration to use, is critical for the application of nanoparticles to become a reality. In conclusion, nanoparticles were applied to promote scaffold characteristics and angiogenesis, improve cell behavior, provide antimicrobial conditions, and cell tracking.
纳米技术似乎为皮肤组织工程中尚未解决的并发症提供了解决方案。根据纳米颗粒的广泛功能,本文献综述旨在为皮肤组织工程未来的成功构建一个前景展望。在本综述中,对近期研究进行了回顾,并总结了纳米颗粒在皮肤组织工程应用中的重要益处和具有挑战性的问题。先前的研究表明,纳米颗粒在改善工程皮肤方面可发挥重要作用。对工程皮肤结构进行仿生设计首先需要了解天然组织并在实验室条件下进行模仿。此外,对纳米颗粒及其对最终结构的相关影响有基本的理解可以指导研究人员选用合适的纳米颗粒。关注基本细节,包括根据支架指定纳米颗粒类型、如何制备纳米颗粒以及使用何种浓度,对于纳米颗粒的应用成为现实至关重要。总之,纳米颗粒被用于促进支架特性和血管生成、改善细胞行为、提供抗菌条件以及细胞追踪。