BrightMAX™ 100 - 1,000 bp

Referentie L0011-S

Formaat : 20µg

Merk : Canvax Biotech

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BrightMAX™ 100 – 1,000 bp

For a Precise, Accurate & Highly Stable size estimation of fragments on Agarose Gels

BrightMAX™ 100 – 1,000 bp DNA Ladder is a precise and highly stable DNA Marker suitable for sizing double-stranded DNA from 100 bp to 1 kb. Ready-to-use, it contains loading dyes with one or two migration visualisation dyes.

It is composed by 10 fragments ranging from 100-1,000 base pairs, with 100 bp increments between bands. The resulting steps are shown in the figure. The 500 bp fragment is at double intensity to serve as reference band. An exact amount of DNA in each band allows approximate quantification of DNA samples.

50 µg
SKU: L0011 Categories: DNA Electrophoresis, DNA Ladders

Detailed information:

  • Ready-to-use format for a perfect visualization on agarose gel.
  • Well-defined bands patterns.
  • Highly Stable at Room Temperature.
  • Bright and accurate.
  • Tested with Ethidium bromide and Gel green.
  • Concentration: 0.1 μg/μL

– 50 μg of BrightMAX™ DNA Ladder (0.1 μg/μL)

Datasheet
MSDS
  • Molecular weight standards for gel electrophoresis.

t

  • Agarose gel electrophoresis.
  • Shipped at: Ambient Temperature.
  • Storage: Stable at room temperature. For long term, store at -20 ºC.
  • Ghadamnan, Elmira. Characterization of Tick-Associated Microbiota in Spain Using a Nanopore-based Metabarcoding Approach: Insights into Potential Zoonotic Pathogens. 2023.
  • Gómez-Melero, S. (2022). Desarrollo de anticuerpos terapéuticos contra el receptor CCR6 humano.
  • Guibert Chipoco, F. E. (2022). Caracterización molecular de la resistencia a carbapenems de cepas de Pseudomonas aeruginosa y Acinetobacter baumannii aisladas del Hospital Maria Auxiliadora–San Juan de Miraflores.
  • Rusenova, N., Vasilev, N., Rusenov, A., Milanova, A., & Sirakov, I. (2022). Comparison between Some Phenotypic and Genotypic Methods for Assessment of Antimicrobial Resistance Trend of Bovine Mastitis Staphylococcus aureus Isolates from Bulgaria. Veterinary Sciences9(8), 401.
  • Villa Suárez, J. M. (2022). Estudio poblacional de hipofosfatasia en la provincia de Granada y caracterización funcional y estructural de las variantes genéticas identificadas.
  • Miranda‐Fuentes, P., García‐Carneros, A. B., Montilla‐Carmona, A. M., & Molinero‐Ruiz, L. Evidence of soil‐located competition as the cause of the reduction of sunflower Verticillium wilt by entomopathogenic fungiPlant Pathology.
  • Ortiz‐Bustos, C. M., López‐Bernal, A., Testi, L., & Molinero‐Ruiz, L. Environmental and irrigation conditions can mask the effect of Magnaporthiopsis maydis on growth and productivity of maize. Plant Pathology.
  • Anter, J., Demyda-Peyras, S., de la Torre, D., del Pilar, M., Campos-Sanchez, J., Luque de Castro, M. D., … & Alonso-Moraga, Á. (2015). Biological and health-promoting activity of vinification byproducts produced in Spanish vineyards. South African Journal of Enology and Viticulture36(1), 126-133.
  • López Fernández, L. (2013). Papel de la N-glicosilación de proteinas en la virulencia de Fusarium oxysporum.
  • Anter, J., Fernández-Bedmar, Z., Villatoro-Pulido, M., Demyda-Peyras, S., Moreno-Millán, M., Alonso-Moraga, Á., … & de Castro, M. D. L. (2011). A pilot study on the DNA-protective, cytotoxic, and apoptosis-inducing properties of olive-leaf extractsMutation Research/Genetic Toxicology and Environmental Mutagenesis723(2), 165-170.

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.