Recent Advances in Microfluidically Spun Microfibers for Tissue Engineering and Drug Delivery Applications.

Joseph Scott Magnani, Reza Montazami, Nicole N Hashemi
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引用次数: 1

Abstract

In recent years, the unique and tunable properties of microfluidically spun microfibers have led to tremendous advancements for the field of biomedical engineering, which have been applied to areas such as tissue engineering, wound dressing, and drug delivery, as well as cell encapsulation and cell seeding. In this article, we analyze the most recent advances in microfluidics and microfluidically spun microfibers, with an emphasis on biomedical applications. We explore in detail these new and innovative experiments, how microfibers are made, the experimental purpose of making microfibers, and the future work that can be done as a result of these new types of microfibers. We also focus on the applications of various materials used to fabricate microfibers, as well as their many promises and limitations.

微流控纺微纤维在组织工程和药物输送中的应用进展。
近年来,微流控纺丝微纤维独特的可调特性使其在生物医学工程领域取得了巨大的进步,已被应用于组织工程、伤口敷料、药物输送、细胞封装和细胞播种等领域。在本文中,我们分析了微流控和微流控纺微纤维的最新进展,重点介绍了微流控纺微纤维在生物医学上的应用。我们将详细探讨这些新的和创新的实验,如何制造微纤维,制造微纤维的实验目的,以及这些新型微纤维可以完成的未来工作。我们还关注用于制造微纤维的各种材料的应用,以及它们的许多前景和局限性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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