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EzWay PAG Pre-cast Gel, 4-12% 1.0mm, 10well
EzWay PAG Pre-cast Gel, 4-12% 1.0mm, 10well
Catalog NumberKG5010
PriceLogin
Size10/pk
TypeGel
Manual/Data Sheet
Specification
EzWay™ PAG System is a precast SDS-PAGE gel for protein analysis. This gel system has a neutral pH of 7.2, so it can maintain the stability of polyacrylamide for 1 year. Also, it keeps the protein samples from modification such as alkylation, deamidation, oxidation that can happen during electrophoresis, so that proteins remain intact and unmodified and it increases yields and signals. Two acrylamide concentrations (10% and 4-12%) are available.
EzWay™ PAG gel system must be used with Tris-Glycine, Tricine or Aspartate SDS buffer systems.
Six separation ranges can be obtained by combining either of gels with these three buffer systems.

Gel Type Shelf Life Concentration Separation Range
Ezway™ PAG 12 months 10% Tris-Glycine 55-205 kDa
10% Tricine 20.1-69 kDa
10% Aspartate 3.5-69 kDa
4-12% Tris-Glycine 55-205 kDa
4-12% Tricine 20.1-205 kDa
4-12% Aspartate 3.5-2-5 kDa
Migration
EzWay PAG Pre-cast Gel - Migration
Citation List
  • Foxp3 is a novel repressor of microglia activation Hwan-Suck Chung, Jun-Ho Lee, Hyunseong Kim, Hyo-Jung Lee, Sung-Hoon Kim, Ho-Keun Kwon, Sin-Hyeog Im, Hyunsu Bae, Glia, Volume 58, Issue 10, pages 1247-1256, 1 August (2010) (abstract)
  • Purification and biochemical properties of an extracellular acid phytase produced by the Saccharomyces cerevisiae CY strain Man-Jin In, Sung-Won Seo, Dong Chung Kim and Nam-Soon Oh Process Biochemistry, Volume 44, Issue 1, January 2009, Pages 122-126 (abstract)
  • Inhibitory effects of casticin on migration of eosinophil and expression of chemokines and adhesion molecules in A549 lung epithelial cells via NF-κB inactivation Hyunsu Bae et al., Journal of Ethnopharmacology 2011 (abstract)
  • Assembly of different length of polyubiquitins on the catalytic cysteine of E2 enzymes without E3 ligase; a novel application of non-reduced/reduced 2-dimensional electrophoresis DY Shin, H Lee, ES Park FEBS Letters, 2011 (abstract)
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