Laboratory of Drug Development and Technologies, Faculty of Pharmacy, University of Coimbra, 3000-548 Coimbra, Portugal.
REQUIMTE/LAQV, Group of Pharmaceutical Technology, University of Coimbra, 3000-548 Coimbra, Portugal.
Int J Mol Sci. 2022 Aug 2;23(15):8581. doi: 10.3390/ijms23158581.
The fast advancement in nanotechnology has prompted the improvement of numerous methods for the creation of various nanoscale composites of which nanofibers have gotten extensive consideration. Nanofibers are polymeric/composite fibers which have a nanoscale diameter. They vary in porous structure and have an extensive area. Material choice is of crucial importance for the assembly of nanofibers and their function as efficient drug and biomedicine carriers. A broad scope of active pharmaceutical ingredients can be incorporated within the nanofibers or bound to their surface. The ability to deliver small molecular drugs such as antibiotics or anticancer medications, proteins, peptides, cells, DNA and RNAs has led to the biomedical application in disease therapy and tissue engineering. Although nanofibers have shown incredible potential for drug and biomedicine applications, there are still difficulties which should be resolved before they can be utilized in clinical practice. This review intends to give an outline of the recent advances in nanofibers, contemplating the preparation methods, the therapeutic loading and release and the various therapeutic applications.
纳米技术的快速发展促使人们改进了许多方法来制备各种纳米级复合材料,其中纳米纤维得到了广泛的关注。纳米纤维是具有纳米级直径的聚合物/复合材料纤维。它们的多孔结构不同,具有很大的表面积。材料选择对于组装纳米纤维及其作为有效药物和生物医学载体的功能至关重要。可以将广泛范围的活性药物成分掺入纳米纤维内部或结合到其表面。纳米纤维具有递送小分子药物(如抗生素或抗癌药物)、蛋白质、肽、细胞、DNA 和 RNA 的能力,这使其在疾病治疗和组织工程中的生物医学应用成为可能。尽管纳米纤维在药物和生物医学应用方面显示出了令人难以置信的潜力,但在它们能够实际应用于临床实践之前,仍然存在一些需要解决的困难。本文旨在概述纳米纤维的最新进展,同时考虑其制备方法、治疗性负载和释放以及各种治疗应用。
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