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5-tamra

" in TargetMol Product Catalog
  • Dye Reagents
    7
    TargetMol | Activity
  • Inhibitor Products
    3
    TargetMol | inventory
  • Peptides Products
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    TargetMol | natural
5-TAMRA
T1889191809-66-4
5-TAMRA (5-Carboxytetramethylrhodamine) (5-Carboxytetramethylrhodamine) yields bright, pH-insensitive orange-red fluorescence (approximate excitation/emission maxima ~546/579) with good photostability.
  • $39
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5(6)-TAMRA SE
T18898246256-50-8
5(6)-TAMRA SE (5(6)-Carboxytetramethylrhodamine N-succinimidyl ester) is the amine-reactive, mixed isomer form of TAMRA. 5(6)-TAMRA SE is a dye for oligonucleotide labeling and automated DNA sequencing applications.
  • $50
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TargetMol | Citations Cited
5-TAMRA-Amyloid β-Protein (1-40)
T832831802087-81-5
5-TAMRA-Amyloid β-Protein (1-40) is a TAMRA-labeled variant of Amyloid β-Protein (1-40), featuring an absorption/emission spectrum at 544/572 nm [1].
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5-TAMRA-SE
T14054150810-68-7
5-TAMRA-SE, an amine-reactive fluorescent agent, forms conjugates that produce bright, pH-insensitive orange-red fluorescence (approximate excitation/emission maxima ~546/579) and exhibit good photostability.
  • $83
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5(6)-TAMRA [5-(and-6)-Carboxytetramethylrhodamine] *Mixed isomers*
TD0066150347-56-1
5(6)-TAMRA contains a carboxylic acid that can be used to react with primary amines via carbodiimide activation of the carboxylic acid. This bright, orange-fluorescent dye produces conjugates with absorption/emission maxima of ~555/580 nm.
  • $50
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5(6)-TAMRA
T1889998181-63-6
5(6)-TAMRA (5(6)-Carboxytetramethylrhodamine) contains a carboxylic acid that can be used to react with primary amines via carbodiimide activation of the carboxylic acid. It is bright, orange-fluorescent dye produces conjugates with absorption/emission maxima of ~555/580 nm.
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7-10 days
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5-TAMRA Azide
T678401006592-61-5
5-TAMRA Azide (TAMRA Azide, isomer 5) is the orange-fluorescent probe that is compatible with various excitation sources including mercury arc, tungsten and xenon arc lamps, the 544 nm line of the Helium-Neon laser and the 532 nm green laser line. It is predominantly used for detection of terminal alkyne-tagged biomolecules via a copper-catalyzed click reaction (CuAAC).
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