Blog - Product Focus

  1. Preloaded MPPA-Li Resin and Rink-Li Resin

    Take advantage of our novel pre-loaded Li resins and bring your peptide synthesis to a "greener" level by employing water or other environmentally more friendly solvents! 

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  2. Frequently Asked Questions on Working with Superparamagnetic Iron Oxide Nanoparticles

    Improve your work with superparamagnetic iron oxide nanoparticles and get the most out of your research - follow our frequently asked questions for detailed handling insights!

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  3. The Photosensitive MNI Protecting Group

    Shining light on 4-methoxy-7-nitroindoline (MNI) photocaged aspartate and glutamate building blocks suitable for Fmoc-SPPS. Liberate the sidechain carboxylic acid by irradiation with UV-light of 365 nm.

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  4. Frequently Asked CliCr® Questions

    Improve your click chemistry synthesis with CliCr® - the 7-membered ring strained alkyne TMTHSI is the smallest, most hydrophilic, and highly reactive reagent for copper-free click chemistry.

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  5. New Maillard Products for Peptide Synthesis and Analytics

    Benefit of our latest Maillard Reaction Product additions! Use them as reference standard for quality control and food analysis or synthesize modified peptides for research studies.

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  6. A Triazolecarbaldehyde for Selective N-Terminal Protein Modification

    Looking for methods to selectively modify your peptide’s N-terminus? Discover triazolecarbaldehydes and benefit of mild reaction conditions, high yields, and compatibility with aqueous media.

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  7. HMPO: A pH-Responsive Linker for Targeted Drug Delivery

    HMPO (5-(hydroxymethyl)pyrogallol orthoester), a plasma-stable, pH-sensitive, 1,6-self-immolative crosslinker derived from the natural product gallic acid. Discover its properties!

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  8. Hidden Champion – The Tetrahydropyranyl Protective Group

    Tetrahydropyranyl (THP) is an excellent protective group for hydroxy and thiol moieties but rarely used in solid-phase peptide synthesis (SPPS). Discover its advantages, e.g., over O/StBu and Trt.

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  9. GGFG Motif for ADC Construction

    To address both chemical and IP considerations in self-immolating linker applications, we propose shifting from the commonly used Val-Cit-PAB linker to the less explored Gly-Gly-Phe-Gly-formyl motif.

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  10. Bioisosteric Argininine Analogs

    Same but different! Expand your possibilities for peptide modification and fine-tuning by implementing Nω-carbamoylated arginine building blocks as bioisosteric arginine analogs.

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