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PolyStreptavidin Protein

Spezies: Streptomyces avidinii Wirt: Streptomyces avidinii Native Func, LF
Produktnummer ABIN7567110
  • Target
    PolyStreptavidin
    Protein-Typ
    Native
    Spezies
    Streptomyces avidinii
    Quelle
    Streptomyces avidinii
    Applikation
    Functional Studies (Func), Lateral Flow (LF)
    Verwendungszweck
    Polymerized Streptavidin
    Produktmerkmale
    Polystreptavidin is a chemically modified, polymerized form of Streptavidin distinguished by its exceptionally high biotin-binding capacity. When applied as a coating on solid surfaces, Polystreptavidin provides a versatile platform for immobilizing and detecting a wide range of biotinylated molecules—including proteins, peptides, PCR fragments, haptens, and more.

    These coatings combine outstanding binding efficiency with excellent chemical and thermal stability, along with an extended shelf life. Polystreptavidin is ideal for use on various substrates such as membranes, beads, biochips, and plastic materials, offering a robust and reliable solution for diverse analytical and diagnostic applications.
    Aufreinigung
    Dialysis
  • Applikationshinweise
    Lateral Flow Assay (LFA): 2 mg/mL in PBS
    Beschränkungen
    Nur für Forschungszwecke einsetzbar
  • Format
    Liquid
    Konzentration
    5 mg/mL
    Buffer
    5 mM PBS, 0.09% Sodium azide
    Konservierungsmittel
    Sodium azide
    Vorsichtsmaßnahmen
    This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.
    Lagerung
    4 °C
    Informationen zur Lagerung
    2 to 8 °C. Do not freeze!
  • Target
    PolyStreptavidin
    Hintergrund
    Streptavidin is a tetrameric protein, composed of four subunits of approximately 13 kDa each, that exhibits an exceptionally strong affinity for the small molecule biotin. This interaction ranks among the most robust non-covalent bonds in biology and remains stable under extreme conditions such as high temperatures, varying pH levels, and exposure to solvents or other chemicals. Biotin can effectively outcompete most other ligands for streptavidin binding and can be easily linked to a variety of biomolecules, making this system highly versatile and widely used—especially in immunoassay applications.

    A single streptavidin molecule is capable of binding up to four biotin or biotinylated proteins. However, the use of Polystreptavidin allows for the attachment of significantly more biotin molecules per complex. This enhanced binding capacity can lead to lower background noise, improved signal strength and specificity, and reduced reagent costs during the development and optimization of immunoassays.
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