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ATTO 550 alkyne

ATTO 550 is an orange fluorescent dye chemically related to the well-known Rhodamine 6G and Rhodamine B dyes. It is characterized by a strong absorption, a high fluorescence quantum yield, and excellent photostability and thermal stability. This dye exhibits moderate hydrophilicity, with an optimal excitation range of 540-565 nm. ATTO 550 is cationic and carries a net electrical charge of +1 after coupling to a substrate. This dye is well-suited for advanced applications in single-molecule detection and high-resolution microscopy techniques, including PALM, dSTORM, and STED microscopy. It is also compatible with flow cytometry (FACS), fluorescence in situ hybridization (FISH), and a variety of other biological assays. ATTO 550 can be used with excitation sources and fluorescence filters similar to those for Cy3® and TAMRA.

The alkyne derivative of ATTO 550 is widely used for labeling azides on peptides, antibodies, and other biomolecules via click chemistry. It participates in copper-catalyzed azide-alkyne cycloaddition (CuAAC) with azide-containing molecules.

Spectrum

Product family

NameExcitation (nm)Emission (nm)Extinction coefficient (cm -1 M -1)Quantum yieldCorrection Factor (260 nm)Correction Factor (280 nm)
ATTO 488 alkyne499520900000.800.220.09
ATTO 390 alkyne39047524000.900.460.09
ATTO 425 alkyne438484450000.900.190.17
ATTO 495 alkyne497525800000.20.450.37
ATTO 550 DBCO5535741200000.800.230.10
ATTO 550 TCO5535741200000.800.230.10
ATTO 550 Tetrazine5535741200000.800.230.10
ATTO 590 alkyne5926211200000.800.390.43
ATTO 610 alkyne6156321500000.700.030.06
ATTO 620 alkyne61964112000010.510.040.06
ATTO 633 alkyne6296511300000.6410.040.05
ATTO 655 alkyne6616791250000.310.240.08
ATTO 647N alkyne6456631500000.6510.060.05
ATTO 680 alkyne6796961250000.300.300.17
ATTO 700 alkyne6997151200000.250.260.41
ATTO 594 alkyne6026211200000.850.260.51
Show More (7)

References

View all 12 references: Citation Explorer
Production of genome-edited mice by visualization of nucleases introduced into the embryos using electroporation.
Authors: Wake, Yui and Kaneko, Takehito
Journal: The Journal of reproduction and development (2020): 469-473
Surface passivation of zero-mode waveguide nanostructures: benchmarking protocols and fluorescent labels.
Authors: Patra, Satyajit and Baibakov, Mikhail and Claude, Jean-Benoît and Wenger, Jérôme
Journal: Scientific reports (2020): 5235
Long-Range Single-Molecule Förster Resonance Energy Transfer between Alexa Dyes in Zero-Mode Waveguides.
Authors: Baibakov, Mikhail and Patra, Satyajit and Claude, Jean-Benoît and Wenger, Jérôme
Journal: ACS omega (2020): 6947-6955
Phasor-based widefield FLIM using a gated 512×512 single-photon SPAD imager.
Authors: Ulku, Arin Can and Bruschini, Claudio and Antolovic, Ivan Michel and Weiss, Shimon and Michalet, Xavier and Charbon, Edoardo
Journal: Proceedings of SPIE--the International Society for Optical Engineering (2019)
Enhanced Detection of Infectious Pancreatic Necrosis Virus via Lateral Flow Chip and Fluorometric Biosensors Based on Self-Assembled Protein Nanoprobes.
Authors: Chavan, Sachin G and Kim, Dasom and Hwang, Jangsun and Choi, Yonghyun and Hong, Jong Wook and Kim, Jeongho and Lee, Min-Ho and Hwang, Mintai P and Choi, Jonghoon
Journal: ACS sensors (2019): 2937-2944
Page updated on October 27, 2024

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Catalog Number70234
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Physical properties

Molecular weight

731.29

Solvent

DMSO

Spectral properties

Correction Factor (260 nm)

0.23

Correction Factor (280 nm)

0.10

Extinction coefficient (cm -1 M -1)

120000

Excitation (nm)

553

Emission (nm)

574

Quantum yield

0.80

Storage, safety and handling

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

Storage

Freeze (< -15 °C); Minimize light exposure
UNSPSC12352200
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