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AAT Bioquest

ReadiCleave™ FITC AML-NHS ester

Fluorescence-based methods have many advantages for biological detections in terms of sensitivity and convenience. Many biological molecules can be readily labeled with a fluorescent tag for fluorescence imaging and flow cytometry analysis. However, most of the existing fluorescent tags are used to permanently labeling biological targets from which the added fluorescent tags cannot be cleaved for further downstream analysis, such as mass spectral analysis. AAT Bioquest’s ReadiCleave™ linkers enable fluorescent tags conjugated to a biological target from which the added fluorescent tag can be removed when needed. This ReadiCleave™ AML FITC contains an azidomethyl linker that can be cleaved with TCEP to remove the fluorescein fluorophore from the target molecule. The cleavage can be carried out by adding 10 mM TCEP solution (pH 7.5), and incubating at 65 °C for 1-5 min.

Spectrum

Product family

NameExcitation (nm)Emission (nm)Extinction coefficient (cm -1 M -1)Quantum yieldCorrection Factor (260 nm)Correction Factor (280 nm)
ReadiCleave™ AML Cy5 NHS ester65167025000010.271, 0.420.020.03
ReadiCleave™ XFD532 AML-NHS ester534553810000.6110.240.09
ReadiCleave™ XFD488 AML-NHS ester499520730000.9210.30.11
ReadiCleave™ XFD546 AML-NHS ester5615721120000.7910.210.12
ReadiCleave™ XFD647 AML-NHS ester6506712390000.3310.000.03

References

View all 50 references: Citation Explorer
Evaluation of Blood-Brain Barrier Integrity Using Vascular Permeability Markers: Evans Blue, Sodium Fluorescein, Albumin-Alexa Fluor Conjugates, and Horseradish Peroxidase.
Authors: Ahishali, Bulent and Kaya, Mehmet
Journal: Methods in molecular biology (Clifton, N.J.) (2021): 87-103
Biomedical and Pharmacological Uses of Fluorescein Isothiocyanate Chitosan-Based Nanocarriers.
Authors: Caprifico, Anna E and Polycarpou, Elena and Foot, Peter J S and Calabrese, Gianpiero
Journal: Macromolecular bioscience (2021): e2000312
Research Note: Modified serum fluorescein isothiocyanate dextran (FITC-d) assay procedure to determine intestinal permeability in poultry fed diets high in natural or synthetic pigments.
Authors: Vuong, Christine N and Mullenix, Garrett J and Kidd, Michael T and Bottje, Walter G and Hargis, Billy M and Tellez-Isaias, Guillermo
Journal: Poultry science (2021): 101138
Influence of Liver Intoxication by Carbon Tetrachloride or D-Galactosamine on Absorption of Fluorescein Isothiocyanate-Dextran-10 and Other Marker Compounds with Different Molecular Weights from the Rat Liver Surface.
Authors: Miyamoto, Hirotaka and Tsuda, Kayoko and Honda, Tominori and Tokunaga, Ayako and Fumoto, Shintaro and Nishida, Koyo
Journal: Biological & pharmaceutical bulletin (2020): 319-324
Development of fluorescein isothiocyanate conjugated gellan gum for application of bioimaging for biomedical application.
Authors: Cho, Hun Hwi and Choi, Joo Hee and Been, Su Young and Kim, Namyeong and Choi, Jeong Min and Kim, Wooyoup and Kim, David and Jung, Jun Jae and Song, Jeong Eun and Khang, Gilson
Journal: International journal of biological macromolecules (2020): 2804-2812
Page updated on November 16, 2024

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Catalog Number7004
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Physical properties

Molecular weight

966.98

Solvent

DMSO

Spectral properties

Absorbance (nm)

487

Correction Factor (260 nm)

0.32

Correction Factor (280 nm)

0.35

Extinction coefficient (cm -1 M -1)

800001

Excitation (nm)

498

Emission (nm)

517

Quantum yield

0.79001, 0.952

Storage, safety and handling

H-phraseH303, H313, H333
Hazard symbolXN
Intended useResearch Use Only (RUO)
R-phraseR20, R21, R22

Storage

Freeze (< -15 °C); Minimize light exposure
UNSPSC12171501