4.7 Article

A microfluidic chip with a U-shaped microstructure array for multicellular spheroid formation, culturing and analysis

期刊

BIOFABRICATION
卷 6, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1758-5082/6/1/015009

关键词

drug screening; microfluidic systems; micro-scale bioreactor; multicellular spheroids; photoresponsive hydrogel

资金

  1. National Science Council of Taiwan [NSC 100-2218-E-007]
  2. Ministry of Education, Taiwan [102N2048E1]

向作者/读者索取更多资源

Multicellular spheroids (MCS), formed by self-assembly of single cells, are commonly used as a three-dimensional cell culture model to bridge the gap between in vitro monolayer culture and in vivo tissues. However, current methods for MCS generation and analysis still suffer drawbacks such as being labor-intensive and of poor controllability, and are not suitable for high-throughput applications. This study demonstrates a novel microfluidic chip to facilitate MCS formation, culturing and analysis. The chip contains an array of U-shaped microstructures fabricated by photopolymerizing the poly(ethylene glycol) diacrylate hydrogel through defining the ultraviolet light exposure pattern with a photomask. The geometry of the U-shaped microstructures allowed trapping cells into the pocket through the actions of fluid flow and the force of gravity. The hydrogel is non-adherent for cells, promoting the formation of MCS. Its permselective property also facilitates exchange of nutrients and waste for MCS, while providing protection of MCS from shearing stress during the medium perfusion. Heterotypic MCS can be formed easily by manipulating the cell trapping steps. Subsequent drug susceptibility analysis and long-term culture could also be achieved within the same chip. This MCS formation and culture platform can be used as a micro-scale bioreactor and applied in many cell biology and drug testing studies.

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