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GlassPAGE™, Hepes-Tris 4-20%, 10wells, 1.5mm
Product number : GSH2001-420T
describe :
Specification : 10 gels/pack
Specification number Specification market price member price quantity add to Shopping Cart
GSH2001-420T 10 gels/pack
$50.00

Introduction:

WSHT's GLASS Gels (Hepes-Tris) are precast polyacrylamide gels with high-performance and better band resolution.

  • Automated gel casting technology can ensure stability and repeatability.
  • Glass plate can effectively reduce the non-specific adsorption of protein and make the protein band sharper and clearer.
  • Electrophoresis can be completed in 40-50 min if under 150 V voltage.
  • Gel cassettes can be easily opened with the Gel Knife, simply push the Gel Knife gently through each side of the gel cassette.
  • No SDS in GLASS Gel, compatible with denaturing and native electrophoresis.
  • Compatible with mainstream mini electrophoresis tanks on the market, such as Bio-Rad, Tanon and Junyi Dongfang, etc.
  • GLASS Gels (Hepes-Tris) are available in different acrylamide concentrations, including gradient gels. We have 6%, 8%,10%,12%,15% and 4-15%,4-20% of separating gels. Customized services for special concentrations are also available.

Note: For samples treated with fluorescent loading buffer Quick Bands(Catalog #:ES008), protein bands can be observed directly under UV light or LED light without stripping the gel and without the need for staining and destaining.

 

Product Data:

  • Height of 4% stacking gel: 1.5 cm
  • Ratio of acrylamide to methylene bis acrylamide: 29:1
  • Gel thickness: 1.5 mm
  • Well format: 10 wells/15 wells
  • Max sample loading volume: 30 μL/well for 15wells, 60 μL/well for 10wells
  • Cassette size: 98×84×4.1 mm
  • Gel size: 81×74×1.5 mm
  • Storage: stored at 4℃ for 18 months; do not freeze.
  • For research use only. Not for use in diagnostic procedures.

1. Miao Wang, Ling Hong, Luyi Cai, Ziyi Zhang, Ningdong Jiang, Yijing Chen, Qian Ying, Lingpeng Kong, Zhiyun Wei, Yao Xu, and Liping Jin. Novel LDLR variants affecting low density lipoprotein metabolism identified in familial hypercholesterolemia. Molecular Biology Reports 51, 153, January 18, 2024. (doi.org/10.1007/s11033-023-09169-8) (IF=2.8)

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