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NA1020

Sigma-Aldrich

GenElute PCR Clean-Up Kit

sufficient for 70 purifications

Synonym(s):

Gen Elute, PCR Purification

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About This Item

UNSPSC Code:
41106300
NACRES:
NA.52

usage

sufficient for 70 purifications

Quality Level

technique(s)

DNA purification: suitable

storage temp.

15-25°C

General description

The GenElute PCR Clean-Up Kit is designed for rapid purification of single-stranded or double-stranded PCR amplification products (100 bp to 10 kb) from other components in the reaction, such as excess primers, nucleotides, DNA polymerase, oil and salts. This kit combines the advantages of silica binding with a convenient spin column format, eliminating the need for expensive resins or toxic organic compounds such as phenol and chloroform.

Application

GenElute PCR Clean-Up Kit has been used for rapid purification of single-stranded or double-stranded PCR amplification products (100bp to 10kb) from other components in the reaction.
Purified DNA can be used in enzymatic reactions, conventional or automated sequencing, cloning and microarray analysis.

Features and Benefits

  • Purifies up to 100 μl or 10 μg of PCR amplified DNA in 8 minutes
  • Recovers up to 95% of PCR products between 100 bp and 10 kb
  • Removes over 99% of primers and other components
  • Eliminates the need to remove mineral oil by organic extraction
  • 40% more purification preps supplied than market leader

Other Notes

The GenElute PCR Clean-Up Kit is designed for rapid purification of single-stranded or double-stranded PCR amplification products (100 bp to 10 kb) from other components in the reactions, such as excess primers, nucleotides, DNA polymerase, oil and salts. This kit combines the advantages of silica binding with a convenient spin column format, eliminating the need for expensive resins or toxic organic compounds such as phenol and chloroform.

Principle

The GenElute PCR Clean-Up Kit combines the advantages of silica binding with a microspin format. The DNA is bound on a silica membrane within the spin column. The bound DNA is washed and the clean, concentrated DNA is eluted in the buffer of choice. Each column can purify up to 100 μL or 10 μg of PCR amplified DNA and recover up to 95% of PCR products between 100 bp and 10 kb. More than 99% of the primers and most primer-dimers (<40 bp are removed).

Legal Information

GenElute is a trademark of Sigma-Aldrich Co. LLC

pictograms

CorrosionExclamation mark

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Warning

Hazard Classifications

Acute Tox. 4 Oral - Eye Irrit. 2 - Met. Corr. 1 - Skin Irrit. 2 - STOT SE 3

target_organs

Central nervous system

Storage Class

8A - Combustible corrosive hazardous materials

flash_point_f

Not applicable

flash_point_c

Not applicable


Certificates of Analysis (COA)

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Kathleen Gärtner et al.
Retrovirology, 6, 32-32 (2009-04-08)
Foamy viruses (FVs) are the most genetically stable viruses of the retrovirus family. This is in contrast to the in vitro error rate found for recombinant FV reverse transcriptase (RT). To investigate the accuracy of FV genome copying in vivo
Andreas Veith et al.
Frontiers in microbiology, 2, 37-37 (2011-07-13)
The sulfur oxygenase reductase (SOR) is the initial enzyme of the sulfur oxidation pathway in the thermoacidophilic Archaeon Acidianus ambivalens. The SOR catalyzes an oxygen-dependent sulfur disproportionation to H(2)S, sulfite and thiosulfate. The spherical, hollow, cytoplasmic enzyme is composed of
Isolation of disseminated neuroblastoma cells from bone marrow aspirates for pretreatment risk assessment by array comparative genomic hybridization.
Vandewoestyne M
International Journal of Cancer. Journal International Du Cancer, 130(5), 1098-1108 (2012)
Genetic analysis of uveal melanoma by array comparative genomic hybridization before and after radiotherapy
Werner Wackernagel
Special Care in Dentistry : Official Publication of the American Association of Hospital Dentists, the Academy of Dentistry for the Handicapped, and the American Society for Geriatric Dentistry, 27.6, 286-291 (2013)
Adriana P Rebelo et al.
Nucleic acids research, 37(20), 6701-6715 (2009-09-11)
To characterize the organization of mtDNA-protein complexes (known as nucleoids) in vivo, we have probed the mtDNA surface exposure using site-specific DNA methyltransferases targeted to the mitochondria. We have observed that DNA methyltransferases have different accessibility to different sites on

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