Recent years have seen major advances in greener peptide synthesis. To highlight such products, we introduced the category "Green Chemistry" on our website.
The Noki-Linker is designed to make peptide synthesis more sustainable while delivering cleaner products. With a build-in safety-catch, it reduces TFA usage. Curious how? Read on!
From fragments to full peptides - ligases like e.g., Sortase, Omniligase, enable efficient ligation and cyclization. Read our blog and learn how enzymatic tools can enhance your peptide synthesis.
Reveal what is hidden - even in cells! 2DPBM enables selective and biocompatible azide reduction to amines for orthogonal protection strategies in peptide synthesis.
Cut the ecological footprint of your peptide synthesis - and your costs - by switching from DMF to DMSO-EtOAc mixtures. Increase your sustainability in SPPS!
Improve your synthesis and avoid undesirable solvents! Use our hydrazine resins - preloaded with hydrazine or amino acid hydrazides - to generate peptide fragments for NCL.
Discover a greener synthetic approach towards peptide hydrazides - valuable precursors, e.g., for the synthesis of peptide thioesters, widely applied building blocks for native chemical ligation.
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!
Discover MYTsA as coupling reagent for peptide synthesis in “traditional” C→N and vice versa in “natural” N→C direction. Avoid racemization and benefit of improved atom economy!
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.