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S6022

Sigma-Aldrich

Sephadex® G-50

DNA grade, BioReagent, for molecular biology, medium

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About This Item

Número CAS:
Número MDL:
Código UNSPSC:
23151817
NACRES:
NA.52

grau

for molecular biology

linha de produto

BioReagent

Formulário

beads

inchaço

1 g swells to 9-11 mL

diâmetro da esfera

50-150 μm

tamanho de poro

exclusion limit (20 bp dsDNA; (rA)20)

pH

2-10

atividade externa

DNase, RNase, none detected

temperatura de armazenamento

room temp

cadeia de caracteres SMILES

O1C(C(C(C(C1CO)O)O)O)OCC2OC(C(C(C2O)O)O)OCC(O)C(O)C(O)C(O)C=O

InChI

1S/C18H32O16/c19-1-5(21)9(23)10(24)6(22)3-31-17-16(30)14(28)12(26)8(34-17)4-32-18-15(29)13(27)11(25)7(2-20)33-18/h1,5-18,20-30H,2-4H2

chave InChI

FZWBNHMXJMCXLU-UHFFFAOYSA-N

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Descrição geral

Sephadex® G-50, Medium is an often-cited gel filtration medium for desalting and buffer exchange of biomolecules > 30,000 MW. Sephadex® is prepared by crosslinking dextran with epichlorohydrin. Sephadex products differ in their degree of cross-linking and hence in their degree of swelling and their molecular fractionation range. “Medium” indicates a large particle size for use in large-scale group separations where high flow rates and low operating pressures are required.

Aplicação

Sephadex® G-50 is suitable for spin column purification of DNA (from contaminating small molecules) for use in hybridizations. It was used to purify PCR products prior to DNA sequencing reactions.
Sephadex® G-50 has been used to purify the DNA products in cycle sequencing reactions.

Características e benefícios

  • Excellent recovery
  • Minimal sample dilution
  • Quick and easy to use

Informações legais

Sephadex is a registered trademark of Cytiva

Código de classe de armazenamento

11 - Combustible Solids

Classe de risco de água (WGK)

WGK 3

Ponto de fulgor (°F)

Not applicable

Ponto de fulgor (°C)

Not applicable

Equipamento de proteção individual

Eyeshields, Gloves, type N95 (US)


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R Symula et al.
Molecular phylogenetics and evolution, 47(2), 569-580 (2008-03-20)
Geographic patterns of species diversity in southeast Australia have been attributed to changes in Pleistocene climate, but related phylogeographic patterns and processes are relatively understudied. 12S and 16S mitochondrial DNA sequences in Crinia signifera populations were used to infer historical
Alisha K Holloway et al.
The American naturalist, 167(4), E88-101 (2006-05-04)
Polyploidization is one of the few mechanisms that can produce instantaneous speciation. Multiple origins of tetraploid lineages from the same two diploid progenitors are common, but here we report the first known instance of a single tetraploid species that originated
The history of a Nearctic colonization: molecular phylogenetics and biogeography of the Nearctic toads (Bufo)
Pauly GB, et al.
Evolution, 58(11), 2517-2535 (2004)
Mark Del Campo et al.
Journal of molecular biology, 389(4), 674-693 (2009-04-28)
The DEAD-box proteins CYT-19 in Neurospora crassa and Mss116p in Saccharomyces cerevisiae are broadly acting RNA chaperones that function in mitochondria to stimulate group I and group II intron splicing and to activate mRNA translation. Previous studies showed that the
Katharina Besemer et al.
Applied and environmental microbiology, 75(22), 7189-7195 (2009-09-22)
Streams are highly heterogeneous ecosystems, in terms of both geomorphology and hydrodynamics. While flow is recognized to shape the physical architecture of benthic biofilms, we do not yet understand what drives community assembly and biodiversity of benthic biofilms in the

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