Screening with this instrument reveals increased heterogeneity in an array of targeted Zn2+ biosensors in HeLa cells... Subsequently, the instrument is used to screen and assess diversity in a number of HeLa-cell based genetic linker libraries for a family of genetically-encoded Zn2+ sensors.
First-pass extracted concept
genetically-encoded Zn2+ sensors
Candidate: toolkit item1 source documents3 linked claims
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Aliases
targeted Zn2+ biosensors
Evidence Snippets
Supporting Sources
Source 1primary paper2017CU Scholar (University of Colorado Boulder)
Linked Claims
Time-resolved fluorescence techniques were used to characterize the sensors and advance deeper molecular understanding to guide further development.
Quoted textsource-backed
Progress on sensor characterization is made using time-resolved fluorescence techniques to advance a deeper molecular understanding of these sensors to guide further development.
The droplet microfluidic instrument was used to screen and assess diversity in HeLa-cell based genetic linker libraries for a family of genetically-encoded Zn2+ sensors.
Quoted textsource-backed
Subsequently, the instrument is used to screen and assess diversity in a number of HeLa-cell based genetic linker libraries for a family of genetically-encoded Zn2+ sensors.
Screening with the droplet microfluidic instrument revealed increased heterogeneity among targeted Zn2+ biosensors in HeLa cells.
Quoted textsource-backed
Screening with this instrument reveals increased heterogeneity in an array of targeted Zn2+ biosensorsin HeLa cells that helps shed light on the complexities of these sensors in different chemical environments.