Search results for: 'Biotin peg'

  • Latest Products 2024 (Part 1)
    What’s new? Don’t miss innovative building blocks and latest technologies – have a look at our new products flyer and discover our portfolio additions from January to June 2024!
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  • Linkerology® on Metal & Ore Surfaces
    A heart of gold! Metals and ores - see here how their surfaces can be equipped with bifunctional organic linker molecules and thus be turned into modifiable biocompatible materials.
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  • Review – Product Highlights 2023 (Part 1)
    Curious about our latest portfolio additions from January to June 2023? Discover our New Products Flyer and check out the summary of recent product highlights! Get in contact for more details!
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  • PotM: Functionalized Dextrans
    Our monofunctionalized dextrans are enriching the toolbox of polymer therapeutics – Dextrans benefit of excellent solubility, biocompatibility, biodegradability, and non-immunogenicity.
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  • Choose your Taste – Functionalized Halo/Snap/Clip Substrates
    The HaloTag®, SNAP-Tag® and CLIP-Tag TM represent versatile tools for the specific, covalent attachment of in principle any molecule of choice to a protein of interest. Discover our substrates!
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  • PotM: Functionalized Biotinylation Reagents
    Iris Biotech offers a variety of (functionalized) biotin and desthiobiotin reagents reactive towards certain functional groups. Discover our growing portfolio and latest additions.
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  • Product of the Month: Dde-based Linkers
    Placing Dde as one terminal group of a linker and a functional group prone for conjugation as the other or using Dde as the central connective portion of a linker, allows for the creation of new bifunctional linkers.
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  • Membrane-Impermeant Biotin Tyramide
    Methods for proteomic mapping of cellular organelles or subdomains that avoid the necessity of cell lysis and purification by targeting specific subcellular regions have several advantages.
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  • Mercapto-PEG-Acids for Bioconjugation
    Mercapto-PEG-Acids are highly hydrophilic, non-antigenic, non-immunogenic and non-toxic.
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  • 2nd Generation Click Chemistry
    a) Catalyst-free Click Reaction Cycloaddition reactions such as the [3+2] azide-alkyne and the [4+2] Diels-Alder reaction, are becoming common conjugation techniques. Applications range from imaging, drug design and development of sensors, thereby spanning the fields of chemical biology, material science, surface and polymer chemistry as well as many other fields. Introduced in 2002, the copper-catalyzed variant of the azide-alkyne cycloaddition (CuAAC) reaction has found broad applicability in t...
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  • Lipoamide-PEGs Confer Extra Strong Binding
    Nanotechnology and nanobiotechnology using gold or silver particles, quantum dots or even magnetic particles are broadly diverse, rapidly expanding areas of study in medical diagnostics and therapeutics, sensoric and chemistry.
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  • Custom Synthesis of Click-able compounds for Cu-free Click Conjugation
    The presence of catalytic copper, limits the in vivo application of the Click this reaction for several reasons. We offer custom synthesis of Strained Cyclooctynes and Substituted 1,2,4,5- Tetrazines as building blocks for fast Click reactions in the absence of any catalyst.
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  • Biotin Tyramide Reagents for Tyrosine-/Protein-Biotinylation
    Tyramine compounds are converted to highly reactive radicals by horseradish peroxidase in presence of H2O2 which preferentially react with surface exposed tyrosines. Biotin Tyramide and Biotin-PEG-Tyramide therefore are ideal reagents used for tyrosine-/protein-biotinylation.
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