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Resonance energy transfer controls

Modification of Cells for Transport Experiments Experimental control of intracellular environment, 171, 817 implantation of isolated carriers and receptors into living cells by Sendai virus envelope-mediated fusion, 171, 829 resonance energy transfer microscopy visual colocalization of fluorescent lipid probes in liposomes, 171, 850. [Pg.450]

Resonance energy transfer is obvious for the positive control. No BRET occurs for the negative control. Courtesy of BMC Labtech, Germany. [Pg.206]

STUDY ON CHEMILUMINESCENT PROBES FOR SUPEROXIDE ANIONS CONTROL OF CHEMILUMINESCENCE RESONANCE ENERGY TRANSFER BY CYCLOMALTOOLIGOSACCHARIDE (CYCLODEXTRIN)... [Pg.347]

An interesting experiment to check the above predictions as to the part of the intermolecular potential that is dominant in controlling process (18) would be a measurement of the temperature dependence of V-V rates in the system. Near-resonant energy-transfer theory predicts a T behavior, while SSH theory predicts a behavior. [Pg.198]

Fig. 5 BRET signals of control and positive (27 pM) thrombin cleavage assays, (a) RIuc/Ciz400a bioluminescence signal, (b) GFP2 resonance energy transfer RET) signal. Concentration of biosensor was 1 pM and concentration of substrate Ciz400a was 16.25 pM... Fig. 5 BRET signals of control and positive (27 pM) thrombin cleavage assays, (a) RIuc/Ciz400a bioluminescence signal, (b) GFP2 resonance energy transfer RET) signal. Concentration of biosensor was 1 pM and concentration of substrate Ciz400a was 16.25 pM...
Bioluminescence and Bioluminescence Resonance Energy Transfer Assays in Mkrofluidks, Fig. 6 (a) Time-dependent BRET ratio of the control assay and the positive (27 pM) assay, (b) Dose response curve for thrombin assay a limit of detection of 19.8 pM and a sensitivity of... [Pg.103]


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See also in sourсe #XX -- [ Pg.322 ]




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Energy controller

Energy resonant

Resonance energy

Resonance transfer

Transfer Control

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