高分子纳米纤维在生物医学上的应用:静电纺丝的进展

A. L. Toledo, Talita N. da Silva, Arianne C. dos S. Vaucher, Arthur H. V. Miranda, Gabriela C. C. Silva de Miranda, Maria Eduarda R. Vaz, Luísa Vieira da Silva, T. N. Barradas, Paulo H. S. Picciani
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引用次数: 1

摘要

在过去的几年里,对新型生物材料的需求呈指数级增长,同时也在寻找能够在药物输送系统和再生医学中生产更有效产品的新技术。目的:聚合物溶液静电纺丝技术是一种较好地满足新型高端材料需求、成本相对较低且操作简单的技术。静电纺丝通常生产超薄纤维,可应用于无数生物医学设备,包括药物、蛋白质、生物分子、激素等的持续输送系统,可应用于从透皮贴片到癌症相关药物的广泛应用。电纺丝纤维可以模仿人体的某些组织,作为一种选择,为植入物创造新的支架有几个优点。在这篇综述中,我们旨在涵盖电纺纤维在生物医学设备领域的应用,更具体地说,是电纺纳米纤维在生产药物输送系统和组织再生支架方面的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Polymer nanofibers for biomedical applications: advances by electrospinning
The demand for novel biomaterials has been exponentially rising in the last years as well as the searching for new technologies able to produce more efficient products in both drug delivery systems and regenerative medicine. Objective: The technique that can pretty well encompass the needs for novel and high-end materials with a relatively low-cost and easy operation is the electrospinning of polymer solutions. Electrospinning usually produces ultrathin fibers that can be applied in a myriad of biomedical devices including sustained delivery systems for drugs, proteins, biomolecules, hormones, etc that can be applied in a broad spectrum of applications, from transdermal patches to cancer-related drugs. Electrospun fibers can be produced to mimic certain tissues of the human body, being an option to create new scaffolds for implants with several advantages. In this review, we aimed to encompass the use of electrospun fibers in the field of biomedical devices, more specifically in the use of electrospun nanofibers applications toward the production of drug delivery systems and scaffolds for tissue regeneration.
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