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Time-Resolved Fluorescence and TR-FRET
[207 - 6.300]
Assessing Microbial Metabolism Using A Simple "Mix & Measure" Oxygen Consumption Assay
Hynes J, Carey C, Wark C
BMG LABTECH 2010
Redlight"from Luxcel Biosciences is a water-soluble oxygen-sensitive phosphorescent probe that facilitates microplate based analysis of microbial oxygen consumption. The microbial metabolism implications of treatments such as drug exposure, genetic manipulation or altered cultured conditions can be easily accessed using BMG LABTECH´s FLUOstar Omega microplate reader to read both growth and oxygen consumption in parallel.
Article
[192 - 3.180]
A DELFIA® time-resolved fluorescence cell-mediated cytotoxicity assay performed on the PHERAstar
Patterson NM, Cunningham T, Jiang X, Dell EJ, Ganske F, Shapiro DJ
BMG LABTECH 2009
Article
[193 - 3.190]
Functional Screening of recombinant CHO-M1 cells using the PHERAstar from BMG LABTECH
Bernd Laffert and Franka Ganske
BMG LABTECH
HTRF IPOne assay with fresh cells from a growing culture and Frozen Instant Cells measured at Cell Culture Service (CCS), Hamburg, Germany.
Article
[177 - 3.170]
HTRF®IP-One Terbium-based assay performed on BMG LABTECH´s PHERAstar Plus
Ganske F, Jacquemart L, Jean A, Lebreton ML, Tardieu JL
BMG LABTECH 2008
Article
[126 - 7.100]
PHERAstar: A Next Generation Multimode Plate Reader for Sophisticated HTS Assays
Orban M, Angersbach S, Hoffman R, Buros M.
BMG LABTECH 2005
Herein we show the capability of the PHERAstar to measure challenging assays in HTS well format. Assays include Far Red PolarScreen® Kinase, cAMP AlphaScreen® and TNFa using the HTRF® technique.
Application Note PDF
[154 - 3.160]
Cisbio´s HTRF® cortisol assay performed on the PHERAstar
Ganske F, Tardieu JL and Degorce F.
BMG LABTECH, Germany and Cisbio International, France
Article
[137 - 3.130]
HTRF® IP-One Assay Performed on the PHERAstar and RUBYstar Plate Readers
Orban M, Degorce F, Tardieu JL
BMG LABTECH 2005
Article
[127 - 3.127]
A novel PI 3-Kinase assay utilising HTRF® technology on the RUBYstar
Rossant CJ, Brown JP, Marshall ML.
BMG LABTECH 2004
Article

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