Zhao L B, Pan L, Zhang K, Guo S S, Liu W, Wang Y, Chen Y, Zhao X Z, Chan H L W
Department of Applied Physics, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.
Lab Chip. 2009 Oct 21;9(20):2981-6. doi: 10.1039/b907478c. Epub 2009 Jul 22.
A microfluidic approach for fabrication of Janus hydrogel particles with magnetic anisotropy is demonstrated. Using this technique, cells and magnetic beads (MBs) can be separately embedded in one hydrogel particle to maintain optical performance, and reduce the contact between cells and magnetic beads (nano- or submicron-particles). Alginate cell capsules prepared by this method can be easily controlled and manipulated by external magnetic fields and require no specific surface modification. Bio-degradability and super-paramagnetic properties of these hydrogel particles were also demonstrated experimentally.
展示了一种用于制备具有磁各向异性的Janus水凝胶颗粒的微流控方法。使用该技术,细胞和磁珠(MBs)可以分别嵌入一个水凝胶颗粒中,以保持光学性能,并减少细胞与磁珠(纳米或亚微米颗粒)之间的接触。通过这种方法制备的藻酸盐细胞胶囊可以很容易地通过外部磁场进行控制和操纵,并且不需要特定的表面修饰。还通过实验证明了这些水凝胶颗粒的生物可降解性和超顺磁特性。