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The rhodamine is incorporated into the animal's whiskers and teeth.
The fluorescence distribution was then viewed using a rhodamine filter.
The signal was revealed in both cases by rhodamine conjugated secondary antibodies.
Upon further investigation with rhodamine 123 the dye was found to target specifically the mitochondria of the cells.
Rhodamine is a protein specific fluorescent stain commonly used in fluorescence microscopy.
In this method, membrane labeled Rhodamine combines with unlabeled membrane.
The laser dye rhodamine 123 is also used in biochemistry to inhibit mitochondrion function.
Other popular tracer dyes are rhodamine, pyranine and sulforhodamine.
GFAP-immunoreactivity was visualized using the same microscope with a rhodamine filter.
Many dyes, such as rhodamine 6G, (in its chloride form), can be very corrosive to all metals except stainless steel.
Cyclooctatetraene and cycloheptatriene are used as a triplet quencher for rhodamine 6G dye lasers.
It forms the core structure for various chemicals, most notably fluorone dyes, including fluorescein, erythrosine and rhodamine.
Alternatively, the antibody can also be tagged to a fluorophore, such as fluorescein or rhodamine (see immunofluorescence).
Dye lasers use complex organic dyes, such as rhodamine 6G, in liquid solution or suspension as lasing media.
While in Texas, the Hauglands developed the Texas Red dye, a rhodamine derivative.
Replacing resorcinol by N,N-diethylaminophenol in this reaction gives rhodamine B:
The sections were then visualized using a Nikon Diaphot fluorescent microscope with a rhodamine filter and a 4x or 10x objective.
Red, yellow and blue colors can be made by replacing the 9,10-bis(phenylethynyl)anthracene with rhodamine B, rubrene and 9,10-diphenylanthracene respectively.
AR stain is a mixture of Auramine O and Rhodamine B.
Some of the laser dyes are rhodamine, fluorescein, coumarin, stilbene, umbelliferone, tetracene, malachite green, and others.
A succinimidyl-ester functional group attached to the rhodamine core, creating NHS-rhodamine, forms another common amine-reactive derivative.
These authors used rhodamine 6G-doped PMMA.
Coumarin dyes emit in the green region of the spectrum while rhodamine dyes are used for emission in the yellow-red.
The crystallization of F-actin was possible due to the use of a rhodamine conjugate that impedes polymerization by blocking the amino acid cys-374.
Other historically common fluorophores are derivatives of rhodamine (TRITC), coumarin, and cyanine.