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AzoDye-3 CPG (1000 A)

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Physical properties
Molecular weightN/A
SolventMeCN
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

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AzoDye-3 CPG is an excellent building block for preparing FRET oligo molecules. AzoDye-3 dyes are nearly non-fluorescent with moderate extinction coefficients. These dark quenchers are most typically used in Molecular Beacon probes in which FRET has minimal contribution to their fluorescence quenching, thus dependence on donor-acceptor spectral overlap is not significant as to other FRET probes such as FRET peptides. AzoDye-3 dyes can quench a variety of fluorophores, in particular, fluorescein derivatives such as FAM, HEX, TET, NED and JOE. This may reflect the AzoDye-3's ability to form stable, non-fluorescent complexes with a fluorophore.

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References


View all 43 references: Citation Explorer
Development and validation of a PCR-free nucleic acid testing method for RNA viruses based on linear molecular beacon probes.
Authors: Du, Fuyu and Zhang, Weijie and Yao, Huimin and Xia, Yuqiong and Zhang, Xianghan and Yang, Peng and Ning, Pengbo
Journal: Journal of nanobiotechnology (2022): 269
FRET-based hACE2 receptor mimic peptide conjugated nanoprobe for simple detection of SARS-CoV-2.
Authors: Kang, Byunghoon and Lee, Youngjin and Lim, Jaewoo and Yong, Dongeun and Ki Choi, Young and Woo Yoon, Sun and Seo, Seungbeom and Jang, Soojin and Uk Son, Seong and Kang, Taejoon and Jung, Juyeon and Lee, Kyu-Sun and Kim, Myung Hee and Lim, Eun-Kyung
Journal: Chemical engineering journal (Lausanne, Switzerland : 1996) (2022): 136143
Rapid and Highly Sensitive Detection of Target DNA Related to COVID-19 Virus With a Fluorescent Bio-conjugated Probe via a FRET Mechanism.
Authors: Bardajee, Ghasem Rezanejade and Zamani, Mohammadreza and Sharifi, Mahdieh and Rezanejad, Habib and Motallebi, Mostafa
Journal: Journal of fluorescence (2022)
Capability of novel fluorescence DNA-conjugated CdTe/ZnS quantum dots nanoprobe for COVID-19 sensing.
Authors: Bardajee, Ghasem Rezanejade and Zamani, Mohammadreza and Mahmoodian, Hossein and Elmizadeh, Hamideh and Yari, Hadi and Jouyandeh, Lavin and Shirkavand, Razieh and Sharifi, Mahdieh
Journal: Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy (2022): 120702
Multiplex qPCR for differentiation of Mycobacterium avium subspecies paratuberculosis in active and passive infection of goats.
Authors: Pachoori, Anjali and Gururaj, K and Sachan, Supriya and Sharma, Deepansh
Journal: Applied microbiology and biotechnology (2022): 4705-4717
Efficient and Versatile Application of Fluorescence DNA-Conjugated CdTe Quantum Dots Nanoprobe for Detection of a Specific Target DNA of SARS Cov-2 Virus.
Authors: Bardajee, Ghasem Rezanejade and Zamani, Mohammadreza and Sharifi, Mahdieh
Journal: Langmuir : the ACS journal of surfaces and colloids (2021): 10223-10232
Amplification-free detection of bacterial genes using a signaling probe-based DNA microarray.
Authors: Taguchi, Tomoyuki and Ishikawa, Machi and Ichikawa, Momoko and Tadenuma, Takashi and Hirakawa, Yuko and Yoshino, Tomoko and Maeda, Yoshiaki and Takeuchi, Hiyori and Nojima, Daisuke and Tanaami, Takeo and Matsunaga, Tadashi and Tanaka, Tsuyoshi
Journal: Biosensors & bioelectronics (2021): 113659
Preparation of antibody-immobilized gelatin nanospheres incorporating a molecular beacon to visualize the biological function of macrophages.
Authors: Yoshimoto, Yu and Jo, Jun-Ichiro and Tabata, Yasuhiko
Journal: Regenerative therapy (2020): 11-18
Accurate In-Vivo Quantification of CD19 CAR-T Cells after Treatment with Axicabtagene Ciloleucel (Axi-Cel) and Tisagenlecleucel (Tisa-Cel) Using Digital PCR.
Authors: Badbaran, Anita and Berger, Carolina and Riecken, Kristoffer and Kruchen, Anne and Geffken, Maria and Müller, Ingo and Kröger, Nicolaus and Ayuk, Francis A and Fehse, Boris
Journal: Cancers (2020)
Evaluation of Nrf2 with Exposure to Nanoparticles.
Authors: Zheng, Fuli and Li, Huangyuan
Journal: Methods in molecular biology (Clifton, N.J.) (2019): 229-246