High-Dose Compound Heat Map for 3D-Cultured Glioblastoma Multiforme Cells in a Micropillar and Microwell Chip Platform
Joint Authors
Nam, Do-Hyun
Lee, Dong Woo
Lee, Sang-Yun
Doh, Il
Ryu, Gyu Ha
Source
Issue
Vol. 2017, Issue 2017 (31 Dec. 2017), pp.1-7, 7 p.
Publisher
Hindawi Publishing Corporation
Publication Date
2017-10-18
Country of Publication
Egypt
No. of Pages
7
Main Subjects
Abstract EN
Glioblastoma multiforme (GBM) is recognized as the most common and lethal form of central nervous system cancer.
To cure GBM patients, many target-specific chemotherapeutic agents have been developing.
However, 2D monolayer cell-based toxicity and efficacy tests did not efficiently screen agents due to the pool reflection of in vivo microenvironments (cell-to-cell and cell-to-extracellular matrix interaction).
In this study, we used a 3D cell-based, high-throughput screening method reflecting the microenvironments using a micropillar and microwell chip platform to draw a high-dose heat map of the cytotoxicity and efficacy of 70 compounds, with two DMSO controls.
Moreover, the high-dose heat map model compared the responses of four 3D-cultured patient-derived GBM cells and astrocytes to high dosages of compounds with respect to efficacy and cytotoxicity, respectively, to discern the most efficacious drug for GBM.
Among the 70 compounds tested, cediranib (a potent inhibitor of vascular endothelial growth factor (VEGF) receptor tyrosine kinases) exhibited the lowest cytotoxicity to astrocytes and high efficacy to GBM cells in a high-dose heat map model.
American Psychological Association (APA)
Lee, Dong Woo& Lee, Sang-Yun& Doh, Il& Ryu, Gyu Ha& Nam, Do-Hyun. 2017. High-Dose Compound Heat Map for 3D-Cultured Glioblastoma Multiforme Cells in a Micropillar and Microwell Chip Platform. BioMed Research International،Vol. 2017, no. 2017, pp.1-7.
https://search.emarefa.net/detail/BIM-1138460
Modern Language Association (MLA)
Lee, Dong Woo…[et al.]. High-Dose Compound Heat Map for 3D-Cultured Glioblastoma Multiforme Cells in a Micropillar and Microwell Chip Platform. BioMed Research International No. 2017 (2017), pp.1-7.
https://search.emarefa.net/detail/BIM-1138460
American Medical Association (AMA)
Lee, Dong Woo& Lee, Sang-Yun& Doh, Il& Ryu, Gyu Ha& Nam, Do-Hyun. High-Dose Compound Heat Map for 3D-Cultured Glioblastoma Multiforme Cells in a Micropillar and Microwell Chip Platform. BioMed Research International. 2017. Vol. 2017, no. 2017, pp.1-7.
https://search.emarefa.net/detail/BIM-1138460
Data Type
Journal Articles
Language
English
Notes
Includes bibliographical references
Record ID
BIM-1138460