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AAT Bioquest

ReadiCleave™ ROXtra AML-NHS ester

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Physical properties
Molecular weight1379.58
SolventDMSO
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
UNSPSC12171501

OverviewpdfSDSpdfProtocol


Molecular weight
1379.58
Fluorescence-based methods have many advantages for biological detections in terms of sensitivity and convenience. Many biological molecules can be readily labeled with a fluorescent tag for fluorescence imaging and flow cytometry analysis. However, most of the existing fluorescent tags are used to permanently labeling biological targets from which the added fluorescent tags cannot be cleaved for further downstream analysis, such as mass spectral analysis. AAT Bioquest’s ReadiCleave™ linkers enable fluorescent tags conjugated to a biological target from which the added fluorescent tag can be removed when needed. This ReadiCleave™ AML ROXtra contains an azidomethyl linker that can be cleaved with TCEP to remove the ROXtra fluorophore from the target molecule. The cleavage can be carried out by adding 10 mM TCEP solution (pH 7.5), and incubating at 65 °C for 1-5 min. ROXtra is the newly developed fluorophore that has the same spectra to the standard ROX dye with significantly improve stability and water solubility.

Calculators


Common stock solution preparation

Table 1. Volume of DMSO needed to reconstitute specific mass of ReadiCleave™ ROXtra AML-NHS ester 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 mM72.486 µL362.429 µL724.858 µL3.624 mL7.249 mL
5 mM14.497 µL72.486 µL144.972 µL724.858 µL1.45 mL
10 mM7.249 µL36.243 µL72.486 µL362.429 µL724.858 µL

Molarity calculator

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Product Family


NameExcitation (nm)Emission (nm)Extinction coefficient (cm -1 M -1)Quantum yieldCorrection Factor (260 nm)Correction Factor (280 nm)
ReadiCleave™ AML Cy5 NHS ester65167025000010.271, 0.420.020.03
ReadiCleave™ XFD532 AML-NHS ester534553810000.6110.240.09
ReadiCleave™ FITC AML-NHS ester4985178000010.79001, 0.9520.320.35
ReadiCleave™ XFD488 AML-NHS ester499520730000.9210.30.11
ReadiCleave™ XFD546 AML-NHS ester5615721120000.7910.210.12
ReadiCleave™ XFD647 AML-NHS ester6506712390000.3310.000.03

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References


View all 50 references: Citation Explorer
Comparison of the AdvanSure RV Plus Real-Time RT-PCR and Real-Q RV II Detection Assays for Respiratory Viruses.
Authors: Chung, Yoo Na and Yoo, In Young and Yun, Sun Ae and Kim, Ji-Youn and Lee, Nam Yong and Huh, Hee Jae
Journal: Annals of laboratory medicine (2021): 506-509
Development and application of SYBR Green Ⅰ real-time quantitative reverse transcription PCR assay for detection of swine Getah virus.
Authors: Xia, Yin-He and Shi, Zi-Cong and Wang, Xin-Wei and Li, Yong-Tao and Wang, Zeng and Chang, Hong-Tao and Liu, Hong-Ying and Chen, Lu and Wang, Chuan-Qing and Yang, Xia
Journal: Molecular and cellular probes (2021): 101730
Optimization of PCR-based TYLCV molecular markers by response surface methodology.
Authors: Lafrance, Richecarde and Villicaña, Claudia and Valdéz-Torres, José Benigno and Martínez-Montoya, Humberto and Castillo-Ruiz, Octelina and Alemán-Castillo, Sanjuana Elizabeth and Esparza-Araiza, Mayra Janeth and León-Félix, Josefina
Journal: Gene (2021): 145606
Droplet digital PCR as an emerging tool in detecting pathogens nucleic acids in infectious diseases.
Authors: Chen, Biao and Jiang, Yufeng and Cao, Xiaohua and Liu, Chen and Zhang, Ning and Shi, Dongmei
Journal: Clinica chimica acta; international journal of clinical chemistry (2021): 156-161
Quantitative detection of human adenovirus from river water by monolithic adsorption filtration and quantitative PCR.
Authors: Hess, Sandra and Niessner, Reinhard and Seidel, Michael
Journal: Journal of virological methods (2021): 114128
Rapid screening for SARS-CoV-2 variants of concern in clinical and environmental samples using nested RT-PCR assays targeting key mutations of the spike protein.
Authors: La Rosa, G and Mancini, P and Bonanno Ferraro, G and Veneri, C and Iaconelli, M and Lucentini, L and Bonadonna, L and Brusaferro, S and Brandtner, D and Fasanella, A and Pace, L and Parisi, A and Galante, D and Suffredini, E
Journal: Water research (2021): 117104
Identification of the novel HLA-A*68:100 allele by PCR-SBT in a Chinese bone marrow donor.
Authors: Liu, Yuanyuan and Guo, Zhiqiang and Wu, Kangle and Tang, Zhaohui and Li, Guoying
Journal: HLA (2021): 539-540
Comparative evaluation of a dual-target real-time RT-PCR assay for COVID-19 diagnosis and assessment of performance in pooled saliva and nasopharyngeal swab samples.
Authors: Yip, Cyril C Y and Leung, Kit-Hang and Ng, Anthony C K and Chan, Kwok-Hung and To, Kelvin K W and Chan, Jasper F W and Hung, Ivan F N and Cheng, Vincent C C and Sridhar, Siddharth
Journal: Expert review of molecular diagnostics (2021)
Application of newly developed SARS-CoV2 serology test along with real-time PCR for early detection in health care workers and on-time plasma donation.
Authors: Soltani-Zangbar, Mohammad Sadegh and Aghebati-Maleki, Leili and Hajivalili, Mahsa and Haji-Fatahaliha, Mostafa and Motavalli, Roza and Mahmoodpoor, Ata and Kafil, Hossein Samadi and Farhang, Sara and Pourakbari, Ramin and Jadidi-Niaragh, Farhad and Roshangar, Leila and Heris, Javad Ahmadian and Kamrani, Amin and Siahmansouri, Homayoon and Hosseini, Maryam and Miahipour, Abolfazl and Shareghi-Oskoue, Oldouz and Parhizkar, Forough and Yousefi, Mehdi
Journal: Gene reports (2021): 101140
Systematic screening for COVID-19 associated invasive aspergillosis in ICU patients by culture and PCR on tracheal aspirate.
Authors: van Grootveld, Rebecca and van Paassen, Judith and de Boer, Mark G J and Claas, Eric C J and Kuijper, Ed J and van der Beek, Martha T and ,
Journal: Mycoses (2021): 641-650