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静电纺丝复合纳米纤维:制备、表征及生物医学应用。

Electrospun hybrid nanofibers: Fabrication, characterization, and biomedical applications.

作者信息

Abadi Banafshe, Goshtasbi Nazanin, Bolourian Saman, Tahsili Jaleh, Adeli-Sardou Mahboubeh, Forootanfar Hamid

机构信息

Herbal and Traditional Medicines Research Center, Kerman University of Medical Sciences, Kerman, Iran.

Brain Cancer Research Core (BCRC), Universal Scientific Education and Research Network (USERN), Kerman, Iran.

出版信息

Front Bioeng Biotechnol. 2022 Dec 1;10:986975. doi: 10.3389/fbioe.2022.986975. eCollection 2022.

Abstract

Nanotechnology is one of the most promising technologies available today, holding tremendous potential for biomedical and healthcare applications. In this field, there is an increasing interest in the use of polymeric micro/nanofibers for the construction of biomedical structures. Due to its potential applications in various fields like pharmaceutics and biomedicine, the electrospinning process has gained considerable attention for producing nano-sized fibers. Electrospun nanofiber membranes have been used in drug delivery, controlled drug release, regenerative medicine, tissue engineering, biosensing, stent coating, implants, cosmetics, facial masks, and theranostics. Various natural and synthetic polymers have been successfully electrospun into ultrafine fibers. Although biopolymers demonstrate exciting properties such as good biocompatibility, non-toxicity, and biodegradability, they possess poor mechanical properties. Hybrid nanofibers from bio and synthetic nanofibers combine the characteristics of biopolymers with those of synthetic polymers, such as high mechanical strength and stability. In addition, a variety of functional agents, such as nanoparticles and biomolecules, can be incorporated into nanofibers to create multifunctional hybrid nanofibers. Due to the remarkable properties of hybrid nanofibers, the latest research on the unique properties of hybrid nanofibers is highlighted in this study. Moreover, various established hybrid nanofiber fabrication techniques, especially the electrospinning-based methods, as well as emerging strategies for the characterization of hybrid nanofibers, are summarized. Finally, the development and application of electrospun hybrid nanofibers in biomedical applications are discussed.

摘要

纳米技术是当今最具前景的技术之一,在生物医学和医疗保健应用方面具有巨大潜力。在该领域,人们对使用聚合物微/纳米纤维构建生物医学结构的兴趣与日俱增。由于其在制药和生物医学等各个领域的潜在应用,静电纺丝工艺在生产纳米级纤维方面受到了广泛关注。静电纺纳米纤维膜已用于药物递送、控释药物、再生医学、组织工程、生物传感、支架涂层、植入物、化妆品、面膜和治疗诊断学等领域。各种天然和合成聚合物已成功静电纺制成超细纤维。尽管生物聚合物具有诸如良好的生物相容性、无毒性和生物可降解性等令人兴奋的特性,但它们的机械性能较差。生物纳米纤维与合成纳米纤维的混合纳米纤维结合了生物聚合物和合成聚合物的特性,如高机械强度和稳定性。此外,各种功能剂,如纳米颗粒和生物分子,可以掺入纳米纤维中以制造多功能混合纳米纤维。由于混合纳米纤维的卓越性能,本研究重点介绍了关于混合纳米纤维独特性能的最新研究。此外,还总结了各种成熟的混合纳米纤维制造技术,特别是基于静电纺丝的方法,以及混合纳米纤维表征的新兴策略。最后,讨论了静电纺混合纳米纤维在生物医学应用中的开发和应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0cc/9764016/f9c4e607f037/fbioe-10-986975-g001.jpg

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