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一种用于纳米纤维合成的便携式静电纺丝仪及其在脱发美容治疗中的应用。

A Portable Electrospinner for Nanofiber Synthesis and Its Application for Cosmetic Treatment of Alopecia.

作者信息

Revia Richard A, Wagner Brandon A, Zhang Miqin

机构信息

Department of Materials Science and Engineering, University of Washington, Seattle, WA 98195, USA.

Department of Neurological Surgery, University of Washington, Seattle, WA 98195, USA.

出版信息

Nanomaterials (Basel). 2019 Sep 14;9(9):1317. doi: 10.3390/nano9091317.

Abstract

A portable, handheld electrospinning apparatus is designed and constructed using off-the-shelf components and 3D-printed parts. The portable electrospinner is used to generate nanofibers with diameters ranging from 85 to 600 nm; examination of these fibers is achieved with scanning electron microscopy. This portable electrospinner has similar capabilities to standard stationary benchtop electrospinners in terms of the diversity of polymers the device is able to spin into nanofibers and their resulting size and morphology. However, it provides much more ambulatory flexibility, employs current-limiting measures that allow for safer operation and is cost effective. As a demonstration of the device's unique application space afforded by its portability, the device is applied in direct-to-skin electrospinning to improve the aesthetics of simulated hair loss in a mouse model by electrospinning dyed polyacrylonitrile nanofibers that mimic hair. The superficial nanofiber treatment for thinning hair is able to achieve an improvement in appearance similar to that of a commercially available powder product but outperforms the powder in the nanofiber's superior adherence to the affected area. The portable electrospinning apparatus overcomes many limitations of immobile benchtop electrospinners and holds promise for applications in consumer end-use scenarios such as the treatment of alopecia via cosmetic hair thickening.

摘要

一种便携式手持静电纺丝装置采用现成组件和3D打印部件设计并制造而成。该便携式静电纺丝仪用于生成直径范围为85至600纳米的纳米纤维;通过扫描电子显微镜对这些纤维进行检测。就该装置能够纺成纳米纤维的聚合物种类及其所得尺寸和形态而言,这种便携式静电纺丝仪与标准的台式静电纺丝仪具有相似的功能。然而,它具有更大的移动灵活性,采用限流措施以实现更安全的操作,并且具有成本效益。作为其便携性所带来的独特应用空间的一个例证,该装置被应用于直接皮肤静电纺丝,通过静电纺丝模仿毛发的染色聚丙烯腈纳米纤维,改善小鼠模型中模拟脱发的美观度。用于头发稀疏的表面纳米纤维治疗能够实现与市售粉末产品相似的外观改善,但在纳米纤维对受影响区域的优异附着力方面优于粉末。这种便携式静电纺丝装置克服了固定式台式静电纺丝仪的许多局限性,并有望应用于消费终端使用场景,如通过美容性头发增厚治疗脱发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c7d/6781269/c1292be79b91/nanomaterials-09-01317-g001.jpg

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