Clean-Easy™ PCR Purification Kit

Cat# AN0063

Size : 50rxn

Brand : Canvax Biotech

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Phone : +1 850 650 7790

Clean-Easy™ PCR Purification Kit

For Highly Efficient, Consistent & Rapid Purification of DNA and remove Contaminants from Reaction mixtures

CleanEasy™ PCR Purification Kit provides an highly efficient, consistent and rapid method to purify DNA and remove contaminants from reaction mixtures (e.g. PCR, digestion or labeling reactions). Comfortable CleanEasy™ MiniSpin Columns contains an exclusive membrane that allows DNA adsorption in presence of chaotropic salts and the removal of contaminants.

SKU: AN0063 Categories: DNA & RNA Extraction, DNA Spin Column based Purification

Detailed information:

  • Really fast and easy procedure: it takes 14 minutes to get results with minimal handling steps.
  • Reproducible yields: high DNA Recovery (70-90%) and consistent yields of pure DNA.
  • Sensitive: proven performance for DNA fragments as short as 75 bp.
  • Pure genomic DNA: ready-to-use in all Molecular Biology applications.

Includes for 50 rxn:
– 50 CleanEasy™ MiniSpin Columns
– 50 Collection tubes
– 25 mL PB Buffer
– 11.25 mL PE Buffer
– 9 mL EB Buffer

Datasheet
MSDS
  • Removal of proteins and salts from PCR, restriction digestion, dephosphorylation, ligation or labelling reactions.
  • Changing of a restriction enzyme buffer.
  • Re-purification of genomic DNA.

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  • Tested in the purification of a 0.6 kb DNA fragment from PCR Mixture.
  • Purified band is analysed in Agarose Gel Electrophoresis.
  • Shipped in: Ambient Temperature.
  • Storage: Room Temperature.
  • Morales-Hidalgo, M., Povedano-Priego, C., Martinez-Moreno, M. F., Ojeda, J. J., Jroundi, F., & Merroun, M. L. (2024). Long-term tracking of the microbiology of uranium-amended water-saturated bentonite microcosms: a mechanistic characterization of U speciationJournal of Hazardous Materials, 135044.
  • Lasheras Niese, V. (2022). Paparres presents en la fauna salvatge de Catalunya: identificació morfològica i verificació molecular d’espècies.
  • Delgado Romero, José A. “Microorganismos extremófilos. Vida microbiana más allá de sus condiciones óptimas.” (2021).
  • Robledo Mahón, T. (2018). Estudio de los procesos biológicos y de la estructura de las comunidades microbianas en el proceso de compostaje de lodos de depuradora de aguas residuales urbanas, en sistemas de membranas semipermea.
  • Rodriguez-Sanchez, A., Margareto, A., Robledo-Mahon, T., Aranda, E., Diaz-Cruz, S., Gonzalez-Lopez, J., … & Gonzalez-Martinez, A. (2017). Performance and bacterial community structure of a granular autotrophic nitrogen removal bioreactor amended with high antibiotic concentrationsChemical Engineering Journal325, 257-269.
  • Vasta, V., Yáñez-Ruiz, D. R., Mele, M., Serra, A., Luciano, G., Lanza, M., … & Priolo, A. (2010). Bacterial and protozoal communities and fatty acid profile in the rumen of sheep fed a diet containing added tannins. Applied and Environmental Microbiology76(8), 2549-2555.
  • Valverde-Tercedor, C., Abadía-Molina, F., Martinez-Bueno, M., Pineda-Molina, E., Chen, L., Oestreicher, Z., … & Jimenez-Lopez, C. (2014). Subcellular localization of the magnetosome protein MamC in the marine magnetotactic bacterium Magnetococcus marinus strain MC-1 using immunoelectron microscopy. Archives of microbiology196(7), 481-488.
  • López-Fernández, M., Fernández-Sanfrancisco, O., Moreno-García, A., Martín-Sánchez, I., Sánchez-Castro, I., & Merroun, M. L. (2014). Microbial communities in bentonite formations and their interactions with uranium. Applied Geochemistry49, 77-86.
  • Avilés, C., Juárez, M., Azor, P. J., Pajuelo, P., Polvillo, O., Álvarez, F., … & Spain, S. (2007). Association of single nucleotide polymorphisms in the µ-Calpain and Calpastatin gene with proteases activities in Retinta beef cattle: Preliminary results. In 53rd Internat. Congress of Meat Science and Technology, Beijing, China.
  • Nudelman, H., Valverde-Tercedor, C., Kolusheva, S., Gonzalez, T. P., Widdrat, M., Grimberg, N., … & Jimenez-Lopez, C. (2016). Structure–function studies of the magnetite-biomineralizing magnetosome-associated protein MamC. Journal of structural biology194(3), 244-252.
  • Moreno, B., Vivas, A., Nogales, R., & Benitez, E. (2009). Solvent tolerance acquired by Brevibacillus brevis during an olive-waste vermicomposting process. Ecotoxicology and environmental safety72(8), 2109-2114.

This product is developed, designed and sold exclusively for Research purposes and in vitro use only (RUO). The product was not tested for use in diagnostics or for drug development, nor is it suitable for administration to humans or animals. For more info, please check its Material Safety Data Sheet available in this website.

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