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Bis-Arg-rhodamine 110

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Physical properties
Molecular weight1098.81
SolventDMSO
Spectral properties
Extinction coefficient (cm -1 M -1)80000
Excitation (nm)500
Emission (nm)522
Storage, safety and handling
H-phraseH303, H313, H333
Hazard symbolXN
Intended useResearch Use Only (RUO)
R-phraseR20, R21, R22
StorageFreeze (< -15 °C); Minimize light exposure
UNSPSC12352200
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Rhodamine aldehyde [5-TAMRA aldehyde]
Show More (47)

OverviewpdfSDSpdfProtocol


See also: Proteases
Molecular weight
1098.81
Extinction coefficient (cm -1 M -1)
80000
Excitation (nm)
500
Emission (nm)
522
This Bis Arg-rhodamine 110 is a fluorogenic aminopeptidase and endopeptidase substrate used for the detection of enzymatic activity of human alpha-thrombin. The non-fluorescent substrate generates a bright green fluorescent rhodamine product, and can be easily detected with the FITC filter set.

Calculators


Common stock solution preparation

Table 1. Volume of DMSO needed to reconstitute specific mass of Bis-Arg-rhodamine 110 to given concentration. Note that volume is only for preparing stock solution. Refer to sample experimental protocol for appropriate experimental/physiological buffers.

0.1 mg0.5 mg1 mg5 mg10 mg
1 mM91.008 µL455.038 µL910.075 µL4.55 mL9.101 mL
5 mM18.202 µL91.008 µL182.015 µL910.075 µL1.82 mL
10 mM9.101 µL45.504 µL91.008 µL455.038 µL910.075 µL

Molarity calculator

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Spectrum


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spectrum

Spectral properties

Extinction coefficient (cm -1 M -1)80000
Excitation (nm)500
Emission (nm)522

Images


Citations


View all 11 citations: Citation Explorer
NMR reveals a dynamic allosteric pathway in thrombin
Authors: H, undefined and ley, L. D., Fuglestad, B., Stearns, K., Tonelli, M., Fenwick, R. B., Markwick, P. R., Komives, E. A.
Journal: Sci Rep (2017): 39575
Continuous-flow injection microfluidic thrombin assays: The effect of binding kinetics on observed enzyme inhibition
Authors: Ramjee, M. K., Patel, S.
Journal: Anal Biochem (2017): 38-46
Inherited Anti-Thrombin Deficiency in A Malay-Malaysian Family: A Missense Mutation at Nucleotide g.13267C&gt;A aka anti-thrombin Budapest 5 (p.Pro439Thr) of the SERPINC 1 gene
Authors: Norlelawati, A. T., Rusmawati, I., Naznin, M., Nur Nadia, O., Rizqan Aizzani, R., Noraziana, A. W.
Journal: Med J Malaysia (2014): 27-30
The role of protein S in the activation of thrombin activatable fibrinolysis inhibitor (TAFI) and regulation of fibrinolysis
Authors: Mosnier, L. O., Meijers, J. C., Bouma, B. N.
Journal: Thromb Haemost (2001): 1040-6
Protein C inhibitor regulates the thrombin-thrombomodulin complex in the up- and down regulation of TAFI activation
Authors: Mosnier, L. O., Elisen, M. G., Bouma, B. N., Meijers, J. C.
Journal: Thromb Haemost (2001): 1057-64
Thrombin activatable fibrinolysis inhibitor (TAFI) does not inhibit in vitro thrombolysis by pharmacological concentrations of t-PA
Authors: Colucci, M., D&apos;Aprile, A. M., Italia, A., Gresele, P., Morser, J., Semeraro, N.
Journal: Thromb Haemost (2001): 661-6
Synergistic actions of a thrombin-derived synthetic peptide and a thrombin receptor-activating peptide in stimulating fibroblast mitogenesis
Authors: Hollenberg, M. D., Mokashi, S., Leblond, L., DiMaio, J.
Journal: J Cell Physiol (1996): 491-6
Efficient production of the C-terminal domain of secretory leukoprotease inhibitor as a thrombin-cleavable fusion protein in Escherichia coli
Authors: Masuda, K., Kamimura, T., Kanesaki, M., Ishii, K., Imaizumi, A., Sugiyama, T., Suzuki, Y., Ohtsuka, E.
Journal: Protein Eng (1996): 101-6
Activation of thrombin-inactivated single-chain urokinase-type plasminogen activator by dipeptidyl peptidase I (cathepsin C)
Authors: Naul, undefined and , U., Rijken, D. C.
Journal: Eur J Biochem (1994): 497-501
Amidinated thrombin: preparation and peptidase activity
Authors: Kang, E. P.
Journal: Thromb Res (1978): 177-80