Digitally tunable physicochemical coding of material composition and topography in continuous microfibres

  • Kang, Edward; 
  • Jeong, Gi Seok; 
  • Choi, Yoon Young; 
  • Lee, Kwang Ho; 
  • Khademhosseini, Ali; 
  • 외 1명
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초록

Heterotypic functional materials with compositional and topographical properties that vary spatiotemporally on the micro-or nanoscale are common in nature. However, fabricating such complex materials in the laboratory remains challenging. Here we describe a method to continuously create microfibres with tunable morphological, structural and chemical features using a microfluidic system consisting of a digital, programmable flow control that mimics the silk-spinning process of spiders. With this method we fabricated hydrogel microfibres coded with varying chemical composition and topography along the fibre, including gas micro-bubbles as well as nanoporous spindle-knots and joints that enabled directional water collection. We also explored the potential use of the coded microfibres for tissue engineering applications by creating multifunctional microfibres with a spatially controlled co-culture of encapsulated cells. © 2011 Macmillan Publishers Limited. All rights reserved.

키워드

DRUG-DELIVERY; FIBERS; GENERATION; SCAFFOLDS; FLOW
제목
Digitally tunable physicochemical coding of material composition and topography in continuous microfibres
저자
Kang, Edward; Jeong, Gi Seok; Choi, Yoon Young; Lee, Kwang Ho; Khademhosseini, Ali; Lee, Sang-Hoon
DOI
10.1038/nmat3108
발행일
2011-11
유형
Article
저널명
Nature Materials
권
10
호
11
페이지
877 ~ 883