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Volumn 134, Issue 5, 2012, Pages 2488-2491
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High-throughput examination of fluorescence resonance energy transfer-detected metal-ion response in mammalian cells
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Author keywords
[No Author keywords available]
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Indexed keywords
CLUSTER MAPS;
EXOGENOUS LIGANDS;
EXTRACELLULAR;
FLUORESCENCE RESONANCE;
FLUORESCENCE RESONANCE ENERGY TRANSFER;
HIGH-THROUGHPUT;
IN-VIVO;
INTRACELLULAR SENSOR;
LIVE CELL;
MAMMALIAN CELLS;
METAL ION SENSORS;
MICROFLUIDIC FLOW;
RESPONSE AMPLITUDES;
SENSOR RESPONSE;
TIME WINDOWS;
TIME-RESOLVED;
DYNAMIC RESPONSE;
ENERGY TRANSFER;
ENZYME ACTIVITY;
FLUORESCENCE;
IONS;
METALS;
ZINC;
SENSORS;
CALCIUM ION;
METAL ION;
ZINC ION;
ARTICLE;
BIOSENSOR;
CALCIUM CELL LEVEL;
CELL HETEROGENEITY;
CELL SUBPOPULATION;
EXTRACELLULAR SPACE;
FLOW CYTOMETRY;
FLUORESCENCE MICROSCOPY;
FLUORESCENCE RESONANCE ENERGY TRANSFER;
IN VIVO STUDY;
INTERCELLULAR SPACE;
ION TRANSPORT;
MAMMAL CELL;
METAL BINDING;
MICROFLUIDICS;
MOLECULAR INTERACTION;
MOLECULAR SENSOR;
PROTEIN DEGRADATION;
ALGORITHMS;
CALCIUM;
FLUORESCENCE RESONANCE ENERGY TRANSFER;
HELA CELLS;
HIGH-THROUGHPUT SCREENING ASSAYS;
HUMANS;
IONS;
ZINC;
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EID: 84856738084
PISSN: 00027863
EISSN: 15205126
Source Type: Journal
DOI: 10.1021/ja2101592 Document Type: Article |
Times cited : (19)
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References (22)
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