Technical Institute of Physics and Chemistry, University of Chinese Academy of Sciences, Beijing 100190, P. R. China.
Hangzhou CASbios Medical Company Hangzhou 310000, P. R. China.
ACS Appl Bio Mater. 2024 Jun 17;7(6):3556-3567. doi: 10.1021/acsabm.4c00318. Epub 2024 May 22.
Skin tissue engineering (STE) is widely regarded as an effective approach for skin regeneration. Several synthetic biomaterials utilized for STE have demonstrated favorable fibrillar characteristics, facilitating the regeneration of skin tissue at the site of injury, yet they have exhibited a lack of in situ degradation. Various types of skin regenerative materials, such as hydrogels, nanofiber scaffolds, and 3D-printing composite scaffolds, have recently emerged for use in STE. Electrospun nanofiber scaffolds possess distinct advantages, such as their wide availability, similarity to natural structures, and notable tissue regenerative capabilities, which have garnered the attention of researchers. Hence, electrospun nanofiber scaffolds may serve as innovative biological materials possessing the necessary characteristics and potential for use in tissue engineering. Recent research has demonstrated the potential of electrospun nanofiber scaffolds to facilitate regeneration of skin tissues. Nevertheless, there is a need to enhance the rapid degradation and limited mechanical properties of electrospun nanofiber scaffolds in order to strengthen their effectiveness in soft tissue engineering applications in clinical settings. This Review centers on advanced research into electrospun nanofiber scaffolds, encompassing preparation methods, materials, fundamental research, and preclinical applications in the field of science, technology, and engineering. The existing challenges and prospects of electrospun nanofiber scaffolds in STE are also addressed.
皮肤组织工程(STE)被广泛认为是一种有效的皮肤再生方法。用于 STE 的几种合成生物材料表现出良好的纤维状特征,有利于损伤部位皮肤组织的再生,但它们表现出原位降解的缺乏。各种类型的皮肤再生材料,如水凝胶、纳米纤维支架和 3D 打印复合支架,最近已用于 STE。静电纺纳米纤维支架具有广泛的可用性、与天然结构的相似性以及显著的组织再生能力等独特优势,引起了研究人员的关注。因此,静电纺纳米纤维支架可以作为具有必要特性和用于组织工程的潜力的创新生物材料。最近的研究表明,静电纺纳米纤维支架具有促进皮肤组织再生的潜力。然而,需要增强静电纺纳米纤维支架的快速降解和有限的机械性能,以加强其在临床环境中的软组织工程应用中的效果。本综述集中于静电纺纳米纤维支架的先进研究,包括制备方法、材料、基础研究以及科学、技术和工程领域的临床前应用。还讨论了静电纺纳米纤维支架在 STE 中的现有挑战和前景。