Solvatochromic dyes of our building blocks provide a fluorescent color palette that enables the integration of sensitive optical sensors into peptides, proteins, and other organic systems.
Nobel Prize in Chemistry: A new blueprint for material design - peptides turn MOFs into bio-inspired, functional architectures. Read on to learn more and discover how.
Explore TT-232 and advance your cancer research. This powerful cyclic peptide is designed to target the somatostatin receptors SSTR1 and SSTR4, which are predominantly expressed on tumor cells.
Unlock new frontiers of kinase inhibitors - derivatives with aminoalkyl handles allow for precision targeting and pave the way for novel drug delivery strategies and smarter kinase therapeutics.
We say "UAA"! By genetic code expansion you can incorporate our novel aminocoumarinyl lysine in your favorite protein where it serves you as fluorescent probe or photo-activatable caged lysine.
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.
Discover CysGluDan, a new fluorescent probe for the detection of reactive metabolites in drug development, which can detect both "soft" and "hard" nucleophiles.
Level up! Carboxymethyl-modified amino acid building blocks suitable for incorporation by solid-phase peptide synthesis. Learn more about available derivatives and their properties.
Have an additional ace up your sleeve for selective and efficient peptide modification, cyclization, and/or bioconjugation. Explore 2-cyanopyridines for click-like reactions. Get more information!
Beyond cysteines: Unlock targeted side-chain modifications of your peptides and proteins via the introduction of 1,2-aminothiols and subsequent click-like functionalization.