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Volumn 40, Issue 1, 2013, Pages 368-376
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A modular cell-based biosensor using engineered genetic logic circuits to detect and integrate multiple environmental signals
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Author keywords
Cell programming; Cellular biosensor; Genetic circuits; Logic gates; Synthetic biology
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Indexed keywords
BIOLOGICAL FILTERS;
CELL TYPES;
CELL-BASED BIOSENSOR;
CELL-CELL COMMUNICATIONS;
CHEMICAL SIGNALS;
COPPER IONS;
DESIGN PRINCIPLES;
ENVIRONMENTAL SIGNALS;
FUTURE APPLICATIONS;
GENETIC CIRCUITS;
MODULAR CELLS;
MULTIPLE INPUTS;
PHENOTYPIC RESPONSE;
PROCESSING UNITS;
SELECTIVITY AND SENSITIVITY;
SENSING CIRCUITS;
SYNTHETIC BIOLOGY;
SYNTHETIC GENES;
TWO-COMPONENT SIGNAL TRANSDUCTION;
ARSENIC;
BACTERIA;
CELLS;
CYTOLOGY;
ESCHERICHIA COLI;
HEALTH CARE;
LOGIC CIRCUITS;
LOGIC GATES;
MERCURY (METAL);
METAL IONS;
NAVIGATION;
SIGNAL DETECTION;
SIGNAL TRANSDUCTION;
BIOSENSORS;
ARSENIC;
CADMIUM;
COPPER;
MERCURY;
ZINC;
ANALYTICAL PARAMETERS;
ARTICLE;
BACTERIAL STRAIN;
BIOSENSOR;
CELL ACTIVATION;
CELL COMMUNICATION;
CELL ENGINEERING;
CELL TYPE;
CONTROLLED STUDY;
ENVIRONMENTAL MONITORING;
ESCHERICHIA COLI;
GENETIC ENGINEERING;
LIMIT OF DETECTION;
MODULAR CELL BASED BIOSENSOR;
NONHUMAN;
POLLUTION;
PROCESS DESIGN;
QUORUM SENSING;
SENSITIVITY AND SELECTIVITY;
SIGNAL DETECTION;
SIGNAL PROCESSING;
SIGNAL TRANSDUCTION;
BIOLOGICAL ASSAY;
BIOSENSING TECHNIQUES;
COMPUTERS, MOLECULAR;
ECOSYSTEM;
EQUIPMENT DESIGN;
EQUIPMENT FAILURE ANALYSIS;
ESCHERICHIA COLI;
GENETIC ENHANCEMENT;
REPRODUCIBILITY OF RESULTS;
SENSITIVITY AND SPECIFICITY;
SIGNAL PROCESSING, COMPUTER-ASSISTED;
SYSTEMS INTEGRATION;
ESCHERICHIA COLI;
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EID: 84868632632
PISSN: 09565663
EISSN: 18734235
Source Type: Journal
DOI: 10.1016/j.bios.2012.08.011 Document Type: Article |
Times cited : (190)
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References (32)
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