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[NS1000] FluoroVue™ Nucleic Acid Gel Stain (10,000X), 500 μl
Description​
FluoroVue™ Nucleic Acid Gel Stain (10,000X) is specially designed for in-gel use and is a safer replacement for conventional Ethidium bromide (EtBr), which poses a significant health and safety hazard to its users. It is a fluorescent stain which offers highly sensitive detection of double-stranded or single-stranded DNA and RNA in a convenient manner. FluoroVue™ Nucleic Acid Gel Stain offers high sensitivity that is several times greater than EtBr. 

FluoroVue™ Nucleic Acid Gel Stain is compatible with both conventional UV gel-illumination systems as well as harmless long wavelength blue light illumination systems, like B-BOX™. When bound to nucleic acids, FluoroVue™ Nucleic Acid Gel Stain has a fluorescent excitation maximum of 250 and 482 nm, and an emission maximum of 509 nm. Therefore, it can replace EtBr without the need of changing existing lab imaging systems.
Feature:
  • Excellent for in-gel staining
  • ​Sensitivity: 0.14 ng (DNA) or 1 ng (total RNA)
  • A safer alternative to EtBr
  • Compatibility: suitable to blue or UV light
  • Increased cloning efficiency (blue light)

TIPS FOR USAGE

TECHNICAL SPECIFICATION

Storage
Protected from light
4°C for 12 months
-20°C for 24 month

​​DATASHEET

MSDS

Safety report- Ames test

​Safety report- cytotoxicity test
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Teaching during COVID-19 pandemic in practical laboratory classes of applied biochemistry and pharmacology: A validated fast and simple protocol for detection of SARS-CoV-2 Spike sequences
Jessica Gasparello, Chiara Papi, Matteo Zurlo, Lucia Carmela Cosenza, Giulia Breveglieri, Cristina Zuccato, Roberto Gambari, Alessia Finotti, PLoS One. 2022 Apr 6;17(4):e0266419. doi: 10.1371/journal.pone.0266419. eCollection 2022.
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Ocular surface toll like receptors in ageing
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Identification of Endosymbiotic Virus in Small Extracellular Vesicles Derived from Trichomonas vaginalis
Seow-Chin Ong, Wei-Hung Cheng, Fu-Man Ku, Chih-Yu Tsai, Po-Jung Huang, Chi-Ching Lee 4, Yuan-Ming Yeh, Petr Rada, Ivan Hrdý, Ravi Kumar Narayanasamy, Tamara Smutná, Rose Lin, Hong-Wei Luo, Cheng-Hsun Chiu, Jan Tachezy, Petrus Tang, Genes (Basel). 2022 Mar 17;13(3):531. doi: 10.3390/genes13030531.
PMCID: PMC8951798

Association Between Retinoid X Receptor Gene Variants and Dyslipidemia Risk in an Iranian Population
Farzane Vafaeie, Toba Kazemi, Saeede Khosravi, Ebrahim Miri Moghaddam, Cureus. 2021 Sep 5;13(9):e17730. doi: 10.7759/cureus.17730. eCollection 2021 Sep.
PMCID: PMC8491560

Genetic and parasitological identification of Trypanosoma evansi infecting cattle in South Sulawesi, Indonesia
Agus Setiawan, Wisnu Nurcahyo, Dwi Priyowidodo, Rina Tri Budiati, and Desy Sylvia Ratna Susanti, Vet World. 2021 Jan; 14(1): 113–119. Published online 2021 Jan 15. doi: 10.14202/vetworld.2021.113-119
PMCID: PMC7896907

PCR analysis for assessment of bacterial bioburden in orthokeratology lens case
Jung Lo, Po-Chiung Fang, Chun-Chih Chien, Chang-Chun Hsiao, Shin-Ling Tseng, Yu-Hsuan Lai, and Ming-Tse Kuocorresponding author, Mol Vis. 2016; 22: 1–8. Published online 2016 Jan 14
PMCID: PMC4734148

Epidemiology and clinical features of viral anterior uveitis in southern Taiwan—diagnosis with polymerase chain reaction
Yu-Ting Hsiao, Ming-Tse Kuo, Wei-Yu Chiang, Tsai-Ling Chao, and Hsi-Kung Kuo, BMC Ophthalmol. 2019; 19: 87. Published online 2019 Apr 3. doi: 10.1186/s12886-019-1093-2 PMCID: PMC6448235

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