Microwell fabrication methods and applications for cellular studies

Citations

SCOPUS

49

초록

Traditional cell culture methods allow bulk biomolecular assays; however, individual cell responses are blended, lost, and ignored. To overcome such limitations of the traditional cell culture methods and to provide more in vivo-like microenvironments, a microwell array system has been used in the last few decades as a very attractive tool for analyzing individual cells. The basic cell trapping mechanism of a microwell system is simple; cells drop into the microwell by gravity. However, there are demands for advanced microwell systems that are capable of performing more active functions. Innovations in substrate materials and cell trapping/handling mechanisms used for microwell systems are meeting such needs. This paper presents an overview of various microwell fabrication techniques, cell trapping mechanisms, and biological applications. Future innovations in microwell systems, which will be useful for cell biology, tissue engineering, and biomedical engineering, are also explored. © 2013 Korean Society of Medical and Biological Engineering and Springer.

키워드

3D curved microwell; Cell analysis; Microfabrication; Microwell array; Cell culture; Cells; Microfabrication; Tissue engineering; Biological applications; Biomolecular assays; Cell analysis; Cell culture methods; Fabrication method; Fabrication technique; Future innovations; Micro wells; Microchannels; biopolymer; indium tin oxide; microsphere; polystyrene; cell culture equipment; cell fusion; cell interaction; cell trapping; culture technique; DNA damage; electrophoresis; embryo cell; gravity; microarray analysis; microtechnology; microwell; review; single cell analysis; soft lithography based fabrication; spheroid cell
제목
Microwell fabrication methods and applications for cellular studies
저자
Kim, S.-H.; Lee, G.H.; Park, J.Y.
DOI
10.1007/s13534-013-0105-z
발행일
2013-09
유형
Review
저널명
Biomedical Engineering Letters (BMEL)
권
3
호
3
페이지
131 ~ 137