Microfluidic spinning of micro- and nano-scale fibers for tissue engineering

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303
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328

초록

Microfluidic technologies have recently been shown to hold significant potential as novel tools for producing micro-and nano-scale structures for a variety of applications in tissue engineering and cell biology. Over the last decade, microfluidic spinning has emerged as an advanced method for fabricating fibers with diverse shapes and sizes without the use of complicated devices or facilities. In this critical review, we describe the current development of microfluidic-based spinning techniques for producing micro-and nano-scale fibers based on different solidification methods, platforms, geometries, or biomaterials. We also highlight the emerging applications of fibers as bottom-up scaffolds such as cell encapsulation or guidance for use in tissue engineering research and clinical practice.

키워드

PHASE-SEPARATION; ALGINATE FIBERS; SHEATH FLOW; METER-LONG; MICROFIBERS; FABRICATION; SCAFFOLDS; HYDROGELS; FOAMS; MICROFABRICATION
제목
Microfluidic spinning of micro- and nano-scale fibers for tissue engineering
저자
Jun, Y; Kang, Edward; Chae, S; Lee, SH
DOI
10.1039/c3lc51414e
발행일
2014-07
저널명
Lab on a Chip
권
14
호
13
페이지
2145 ~ 2160