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You searched for "protein marker%3A%3A%3A%3Arelevance"

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You searched for "protein marker%3A%3A%3A%3Arelevance"

887 Documents found
  • ProSieve™ Protein Marker - Instructions for Conjugating AP and HRP to S-Tag
    50547 ProSieve Protein Marker
  • ProSieve™ Unstained Protein Marker - Protocol
    Instructions for proper use of ProSieve™ Unstained Protein Markers
  • ProSieve™ Unstained Protein Marker II - Protocol
    Instructions for proper use of ProSieve™ Unstained Protein Markers
  • ProSieve™ Color Protein Marker - Protocol
    Instructions for proper use of ProSieve™ Color Protein Markers
  • ProSieve™ QuadColor™ Protein Marker - Protocol
    Instructions for proper use of ProSieve™ QuadColor™ Protein Marker
  • Protein Electrophoresis
  • Protein Electrophoresis Fisher
    Fisher CoBranded Version
  • Protein Electrophoresis VWR
    VWR Cobranded Version
  • SourceBook Section XIII - Protein Separation in Agarose Gels
    1. Introduction 2. Buffers for Protein Separation in Agarose 3. Casting Agarose Gels for Protein Separation 4. Preparation and Loading of Protein Samples 5. Optimal Voltage and Electrophoretic Times 6. Detection of Proteins in Agarose Gels 7. Gel Drying and Preservation 8. Processing Agarose Gels Following Electrophoresis 9. Recovering Proteins from Agarose Gels 10. References
  • SourceBook Section I - Frequently Asked Questions
    1. Nucleic Acid FAQs 2. Protein Analysis FAQs
  • SYPRO® Ruby Protein Blot Stain - Protocol
    Instructions for proper use of SYPRO® Ruby Protein Blot Stain
  • SYPRO® Ruby Protein Gel Stain - Protocol
    Instructions for proper use of SYPRO® Ruby Protein Gel Stain
  • Agaroses for Protein Separation
    Overview of Agaroses for Protein separation
  • SYPRO Red & Tangerine Protein Gel Stain - Protocol
    Instructions for proper use of SYPRO® Red & Tangerine Protein Gel Stains
  • Expanded HUVECs for High-throughput Screening
    HUVECs are a good primary endothelial cell type for many in vitro studies and also for several high-throughput screening applications. Consequently, Lonza offers, HUVEC-XL. These cells are expanded to passage-3 from pooled P1-HUVECs and packaged at 10 million cells per ampoule.
  • Instructions – PPiLight™ Inorganic Pyrophosphate Assay Kit
    Instructions for proper use of PPiLight™ Inorganic Pyrophosphate Assay Kit
  • SourceBook Section X - Protein Separation in Polyacrylamide Gels
    1. Buffers for Protein Electrophoresis 2. Casting Polyacrylamide Gels 3. Loading and Running Proteins on Polyacrylamide Gels 4. Loading Buffers 5. Optimal Voltage, Running Times and Power Settings 6. ProSieve® 50 Gel Solution 7. PAGEr® Gold Precast Polyacrylamide Minigels 8. Chamber Modification Instructions 9. Detection of Proteins in Polyacrylamide Gels 10. SYPRO® Protein Gel Stains 11. Coomassie® Blue Stain 12. Silver Stain 13. References
  • A Non-Viral Method for Modifying and Expanding Primary T Cells
    Learn how Lonza’s Cocoon® Platform, 4D-Nucleofector® LV Unit and X-VIVO® 15 Medium are integrated to enable non-viral genetic modification and subsequent expansion of primary T cells in a functionally-closed, automated workflow.
  • PowerCHO® Protein Expression Media
  • ProCHO® Protein Expression Media
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