4 Results for "

FRET mechanism

" in MedChemExpress (MCE) Product Catalog:
Products (4)

4 Results for "FRET mechanism" in MCE Product Catalog:

Cat. No.: HY-D3277
PE-VF594 is a high-brightness fluorescent dye used in flow cytometry, primarily for labeling antibodies or streptavidin to help identify specific cell subpopulations. PE-VF594 is a tandem dye composed of two covalently linked fluorescent groups: one is phycoerythrin (PE), responsible for absorbing laser energy; the other is the receptor molecule VF594. Energy is transferred from PE to VF594 via fluorescence resonance energy transfer (FRET) mechanism (Ex/Em = 450-500 nm/614 nm) .
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Cat. No.: HY-D2924
CBG-549-QSY7 is a Dylight 549-labeled SNAP tag fluorescent probe (Ex/Em: 546 nm/580 nm), specially designed for non-washable fluorescence imaging applications. CBG-549-QSY7 employs an intramolecular FRET quenching mechanism: intramolecular fluorescence quenching occurs before binding to the SNAP tag, and upon binding, the quenching group is cleaved, releasing fluorescence. The background fluorescence of CBG-549-QSY7 is extremely low, and clear cell membrane images can be obtained after 5 minutes of incubation .
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Cat. No.: HY-D3404
CAS No.: 169454-13-1
BODi-1 is a fluorescent modulator targeting dsDNA, which binds to dsDNA via a bis-intercalation mechanism (Ex=465 nm, Em=490 nm). BODi-1 exhibits a fluorescence enhancement effect upon binding to nucleic acids, but its fluorescence intensity, anisotropy and average lifetime decrease at higher dye/DNA ratios. When BODi-1 binds to DNA in liposome complexes, it also shows red-shifted emission spectra, along with reduced quantum yield and average lifetime. BODi-1 does not induce significant DNA conformational changes when the dye/DNA ratio is below 0.01. BODi-1 can be used as a fluorescent probe for the characterization of liposome complexes and FRET studies at this ratio .
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Cat. No.: HY-D3418
Target:  

Fluorescent Dye

Domaines de recherche:  

Inflammation/Immunology

BOD-Tz-TMR is a fluorescent probe used for nitric oxide (NO) detection and atherosclerotic plaque imaging.BOD-Tz-TMR has a detection limit of 31 nM for NO. BOD-Tz-TMR functions via Förster resonance energy transfer (FRET) and bioorthogonal reactions, in which the tetrazine linker quenches fluorescence through the energy transfer to dark state (ETDS) mechanism. The interaction of BOD-Tz-TMR with NO triggers a ratiometric shift in fluorescence from BODIPY (Ex/Em: 488 nm/512 nm, green channel) to TMR (Em: 592 nm, red channel). BOD-Tz-TMR labels macrophages through a bioorthogonal reaction with BCN, enabling its targeted accumulation at atherosclerotic plaque sites to detect endogenous NO associated with lesion progression. BOD-Tz-TMR can be used in studies related to atherosclerosis .
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