The PCR Clean Up Kit is a system designed for rapid clean up of DNA bands ranging from100bp to 20kb
Final price excl. shipping costs3
Description
The GF-1 PCR Clean-up Kit is designed for rapid and efficient clean up of DNA ranging from 100bp to 20kb. The kit efficiently removes dNTPs, short oligo fragments, mineral oil, enzymes from a PCR
reaction product, removes proteins after restriction enzyme treatment and dephosporylation and residual dye and ethidium bromide. This kit is also suited for concentrating DNA, changing of
buffers and desalting.
Features
- Indicator dye for easy pH determination
- 90% of recovery achievable
- Mini-column spin technology
- Purification process less than 15 minutes
- Highly pure DNA ready to use for routine molecular biology applications
such as restriction enzyme digestion, PCR, ligation, DNA sequencing,
probe preparations, etc.
Application
For purification of DNA from reaction solutions
Message
The PCR Clean Up Kit contains special buffers to provide the correct salt concentration and pH for efficient recovery (80 - 90%) of DNA. This kit uses a specially treated glass filter membrane
fixed into a column to efficiently bind DNA in the presence of high salt. It applies the principle of a mini-column spin technology and is well suited for the removal of excess dNTPs, short oligo
fragments, mineral oil, enzymes from a PCR reaction product, proteins after restriction enzyme treatment and dephosporylation and residual dye and ethidium bromide. This kit also allows for
concentration of DNA, changing of buffers and desalting. Buffer PCR contains a pH indicator for easy determination of the optimal pH for efficient recovery of DNA fragments but at the same time
does not interfere with DNA yield and quality as it is thoroughly removed during the subsequent washing steps.
High recovery of pure DNA obtained is ready-to-use in many routine molecular biology applications such as restriction enzyme digestion, radioactive/fluorescence DNA sequencing, PCR, ligation and
transformation, probe preparations and other manipulations.
Dear customer, GeneON likes to send free samples to convince the valued customer about the quality. Please understand that the shipping costs may be very high to some destinations. That is the reason why we cannot assure to fulfil all sample requests. Sorry for that, please understand. You may also set an inquiry/order directly by e-mail .
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Luang-In,V., Deeseenthum, S. (2016) Exopolysaccharide-producing isolates from Thai milk kefir and their antioxidant activities. . LWT - Food Science and Technology.73. Pp592-601
Rosli, M.K.A., et al (2016) Phylogenetic Relationships of the
Vulnerable Wild Cattle, Malayan gaur (Bos gaurus hubbacki), and its Hybrid, the Selembu, Based on Maternal Markers. Turkish Journal of Zoology, p.1-10.
Javadi Nobandegani, M.B., Mohd Saud, H., & Yun, W.M. (2015) Phylogenetic Relationship of Phosphate Solubilizing Bacteria According to 16S rRNA Genes. ZooKeys. 147, p.121-140.
Abdul-Latiff, M.A.B., et al. (2014) Phylogenetic
Relationships of Malaysia’s Long-Tailed Macaques, Macaca fascicularis, Based on Cytochrome b Sequences. BioMed Research International.
Masstor, N.H., et al. (2014) Molecular Phylogeny of the Bamboo
Sharks (Chiloscyllium spp.). BioMed Research International.
Bondoc, O.L., Dominguez, J.M.D., & Peñalba, F.F. (2013) DNA Barcoding of Domestic Swine Breeds and Crossbreeds (Sus scrofa) in the Philippines. Philippine Journal of Veterinary and Animal Sciences,39(1): 31-42.
Waiho, K. et al (2013) Isolation and Characterization of
Partial Mitochondrial CO1 Gene from Harpacticoid Copepod, Leptocaris canariensis (Lang, 1965). Academic Journal,12(50): 6901-6906.
Bondoc, O.L., & Santiago, R.C. (2012) IThe Use of DNA
Barcodes in the Evolutionary Analysis of Domestic Breeds and Strains of Chicken (Gallus gallus domesticus) in the Philippines. The Philippine Agricultural Scientist, 95(4):
358-369.