Acrylamide electrophoresis gels are used for the separation and analysis of nucleic acids and proteins. Products include precast gels designed for analysis of specific biomolecules and welcome packs containing gels, buffers, and reagents.
Invitrogen NuPAGE Bis-Tris protein gels are precast polyacrylamide gels that provide broad molecular weight protein separation with high resolution and sample integrity. These precast gels are ideal for applications where protein integrity is crucial.
Invitrogen Novex Tris-Glycine Mini Gels, WedgeWell format, are polyacrylamide gels that provide reproducible separation of a wide range of proteins into well-resolved bands with two times the loading capacity.
Invitrogen NuPAGE Tris-Acetate protein gels provide excellent separation of large molecular weight proteins. They are high performance polyacrylamide gels that simulate the denaturing or native conditions of the traditional laemmli system.
Invitrogen NuPAGE Bis-Tris protein gels are precast polyacrylamide gels that provide broad molecular weight protein separation with high resolution and sample integrity. These precast gels are ideal for applications where protein integrity is crucial.
Invitrogen Bolt Bis-Tris Plus gels are precast polyacrylamide gels designed for optimal separation of a wide range of protein sizes under denaturing conditions. Similar to NuPAGE Bis-Tris gels, Bolt Bis-Tris Plus gels are designed to deliver consistent gel performance and provide a neutral pH...
Invitrogen Novex Tris-Glycine Mini Gels, WedgeWell format, are polyacrylamide gels that provide reproducible separation of a wide range of proteins into well-resolved bands with two times the loading capacity.
Invitrogen Novex Tris-Glycine Mini Gels, WedgeWell format, are polyacrylamide gels that provide reproducible separation of a wide range of proteins into well-resolved bands with two times the loading capacity.
Invitrogen Novex Tricine Gels provide separation of low molecular weight proteins and peptides. The Tricine system is a modification of the tris-glycine discontinuous buffer system developed by Schaegger and von Jagow (Schaegger and von Jagow, 1987) specifically for resolving peptides and low...
Invitrogen NuPAGE Bis-Tris protein gels are precast polyacrylamide gels that provide broad molecular weight protein separation with high resolution and sample integrity. These precast gels are ideal for applications where protein integrity is crucial.
Invitrogen Novex Tris-Glycine Mini Gels, WedgeWell format, are polyacrylamide gels that provide reproducible separation of a wide range of proteins into well-resolved bands with two times the loading capacity.
Novex™ Tris-Glycine polyacrylamide gel chemistry is based on the Laemmli system (1) with minor modifications for maximum performance in the pre-cast format. These gels do not contain SDS and can therefore be used to accurately separate both native and denatured proteins.
The Novex Tricine Welcome Pack provides all of the necessary Novex Tricine gels, buffers, and reagents you will need to begin using the XCell SureLock Mini-Cell. The XCell SureLock Mini-Cell is a vertical mini-protein gel electrophoresis system compatible with all Invitrogen mini precast gels and...
2D electrophoresis is used to separate proteins based upon their molecular weight after isoelectric focusing (IEF). 2D gels are generally designed to accept IEF tube gels, sample lanes sliced from vertical or horizontal IEF slab gels, or immobilized pH gradient (IPG) strips.
Invitrogen Novex Tricine Gels provide separation of low molecular weight proteins and peptides. The Tricine system is a modification of the tris-glycine discontinuous buffer system developed by Schaegger and von Jagow (Schaegger and von Jagow, 1987) specifically for resolving peptides and low...
The NuPAGE Bis-Tris Welcome Pack provides all of the necessary NuPAGE gels, buffers, and reagents you will need to begin using the Mini Gel Tank. The Mini Gel Tank is compatible with all Invitrogen Novex, NuPAGE, and Bolt mini gels. Each Mini Gel Tank can accommodate up to two gels per run.