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Application of a FRET-based caspase sensor for screening anti-apoptosis compounds in a culture-plate-based high throughput assay
Luo K.Q.; Yu T.
2011-09-26
Conference Name4th IEEE International Nanoelectronics Conference, INEC 2011
Source PublicationProceedings - International NanoElectronics Conference, INEC
PagesArticle number 5991768
Conference Date21-24 June 2011
Conference PlaceTaiwan
Abstract

In recent years, it has been recognized that the occurrence of cancer is not only a result of uncontrolled cell proliferation, but is also closely related to cancer cells resistant to apoptosis, a programmed death process used by our body to remove unwanted cells. Thus, a new approach for treating cancer is to re-activate apoptosis in cancer cells using apoptosis-inducing drugs. To find such drugs, a sensitive high-throughput assay for detecting apoptosis is needed to expedite the search process. Recently, we have developed a novel fluorescence resonance energy transfer (FRET)-based biosensor that can detect the most important event in apoptosis: caspase-3 activation, in living cells. This fluorescence-based technology is ideally suited for rapid detection of apoptosis. In this project, a high-throughput platform based on our FRET-based biosensor has been developed for detecting apoptosis from cervical cancer cells. We could use this platform to discover new anticancer compounds. © 2011 IEEE.

KeywordAnti-cancer Drugs Apoptosis Caspase Drug Discovery Fret Green Fluorescent Protein
DOI10.1109/INEC.2011.5991768
URLView the original
Language英語English
Scopus ID2-s2.0-80053039612
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Document TypeConference paper
CollectionFaculty of Health Sciences
Corresponding AuthorLuo K.Q.
AffiliationNanyang Technological University
Recommended Citation
GB/T 7714
Luo K.Q.,Yu T.. Application of a FRET-based caspase sensor for screening anti-apoptosis compounds in a culture-plate-based high throughput assay[C], 2011, Article number 5991768.
APA Luo K.Q.., & Yu T. (2011). Application of a FRET-based caspase sensor for screening anti-apoptosis compounds in a culture-plate-based high throughput assay. Proceedings - International NanoElectronics Conference, INEC, Article number 5991768.
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