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PMID: 22076418 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Meniscus induced self organization of multiple deep concave wells in a microchannel for embryoid bodies generation.

Lab on a chip ·Vol. 12 ·No. 1 ·2012-01-07 ·页码 159-66

Jeong GS, Jun Y, Song JH, Shin SH, Lee SH

Abstract

Embryonic stem cells (ESCs) have attracted great interest in the fields of tissue engineering, regenerative medicine, and organogenesis for their pluripotency and ability to self-renew. ESC aggregation, which produces an embryoid body (EB), has been widely utilized as a trigger of in vitro directed differentiation. In this paper, we propose a novel method for constructing large numbers of deep concave wells in PDMS microfluidic chips using the meniscus induced by the surface tension of a liquid PDMS prepolymer, and applied this chip for the mass production of uniform sized EBs. To investigate if the microenvironment in the deep concave well is suitable for ES cells, the oxygen diffusion to the deep concave well was analyzed by CFD simulation. Murine EBs were successfully formed in the deep concave wells without loss of cells and laborious careful intervention to refresh culture media. The size of the EBs was uniform, and retrieving of EBs was done just by flipping over the chip. All the processes including EB formation and harvest are easy and safe to cells, and their viability after completion of all processes was over 95%. The basic properties of the EBs were generated and their capacity to differentiate into 3 germ layers was investigated by analyzing the gene expression profile. The harvested EBs were found to differentiate into cardiac cells and neurons, and neurofilaments formed branches of elongated extensions more than 1.0 mm in length.

MeSH 主题词
Animals Cell Culture Techniques/instrumentation,methods Cell Differentiation Cell Line Cell Survival Computer Simulation Diffusion Dimethylpolysiloxanes/chemistry Embryoid Bodies/cytology,physiology Mice Microfluidic Analytical Techniques/instrumentation Myoblasts, Cardiac/cytology Neuroepithelial Cells/cytology Oxygen/chemistry Surface Tension Tissue Engineering/instrumentation,methods
化学物质
Dimethylpolysiloxanes baysilon Oxygen
作者与单位
共 5 位作者,点击展开单位 / ORCID
Jeong Gi Seok
Department of Biomedical Engineering, College of Health Science, Korea University, 1-boneji San, Jeongneung-dong, Seongbuk-gu, Seoul, 136-100, Korea.
Jun Yesl
Song Ji Hoon
Shin Soo Hyun
Lee Sang-Hoon
Article Info
Journal
Lab on a chip
Abbr.
Lab Chip
ISSN
1473-0189
Published
2012-01-07
电子出版
2011-00-10
页码
159-66
Language
English
Country/Region
England
NLM ID
101128948
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