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Merck

88793

Sigma-Aldrich

Atto 532 NHS-Ester

BioReagent, suitable for fluorescence, ≥90% (HPLC)

Synonym(e):

Atto 532

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About This Item

MDL-Nummer:
UNSPSC-Code:
12352108
NACRES:
NA.32

Produktlinie

BioReagent

Qualitätsniveau

Assay

≥90% (HPLC)
≥90% (degree of coupling)

Form

powder

Hersteller/Markenname

ATTO-TEC GmbH

λ

in methanol: water (1:1) (with 0.1% perchloric acid)

UV-Absorption

λ: 532-538 nm Amax

Eignung

suitable for fluorescence

Lagertemp.

−20°C

Allgemeine Beschreibung

Atto 532 NHS ester is a fluorescent dye related to the well-known laser dye, Rhodamine 6G. The fluorescence activity is excited efficiently at the 515-545nm range. A suitable excitation source for Atto 532 is the 532 nm output of the frequency-doubled Nd: YAG laser.

Anwendung

Atto 532 NHS ester is highly suitable for single-molecule detection applications and high-resolution microscopy such as PALM, dSTORM, and STED. In addition, the dye is used in flow cytometry (FACS) and fluorescence in-situ hybridization (FISH) methods.

Leistungsmerkmale und Vorteile

Characteristic features of the Atto 532 NHS ester are:
  • Strong Absorption.
  • High Fluorescence quantum yield.
  • High Photostability.
  • Excellent water solubility.

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Lagerklassenschlüssel

11 - Combustible Solids

WGK

WGK 3

Flammpunkt (°F)

Not applicable

Flammpunkt (°C)

Not applicable

Persönliche Schutzausrüstung

Eyeshields, Gloves, type N95 (US)


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Rumelo Amor et al.
Scientific reports, 4, 7359-7359 (2014-12-09)
Standing-wave excitation of fluorescence is highly desirable in optical microscopy because it improves the axial resolution. We demonstrate here that multiplanar excitation of fluorescence by a standing wave can be produced in a single-spot laser scanning microscope by placing a
Moritz Marcinowski et al.
Nature structural & molecular biology, 18(2), 150-158 (2011-01-11)
The endoplasmic reticulum is the site of folding, assembly and quality control for proteins of the secretory pathway. The ATP-regulated Hsp70 chaperone BiP (heavy chain-binding protein), together with cochaperones, has important roles in all of these processes. The functional cycle
Kiyoto Kamagata et al.
Journal of the American Chemical Society, 134(28), 11525-11532 (2012-06-14)
A method was developed to detect fluorescence intensity signals from single molecules diffusing freely in a capillary cell. A unique optical system based on a spherical mirror was designed to enable quantitative detection of the fluorescence intensity. Furthermore, "flow-and-stop" control
John F Lesoine et al.
Nano letters, 12(6), 3273-3278 (2012-06-06)
We present a method for measuring the fluorescence from a single molecule hundreds of times without surface immobilization. The approach is based on the use of electroosmosis to repeatedly drive a single target molecule in a fused silica nanochannel through
Chunlai Chen et al.
Nucleic acids research, 35(9), 2875-2884 (2007-04-14)
Hybridization of nucleic acids with secondary structure is involved in many biological processes and technological applications. To gain more insight into its mechanism, we have investigated the kinetics of DNA hybridization/denaturation via fluorescence resonance energy transfer (FRET) on perfectly matched

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