State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai, 200237, China.
Key Laboratory for Ultrafine Materials of Ministry of Education, Frontiers Science Center for Materiobiology and Dynamic Chemistry, Research Center for Biomedical Materials of Ministry of Education, East China University of Science and Technology, Shanghai, 200237, China.
Angew Chem Int Ed Engl. 2021 Dec 6;60(50):26063-26071. doi: 10.1002/anie.202103540. Epub 2021 Nov 9.
We design the tetraalkylammonium carboxylate-initiated superfast polymerization on α-amino acid N-carboxyanhydrides (NCA) for efficient synthesis of polypeptides. Carboxylates, as a new class of initiator for NCA polymerization, can initiate the superfast NCA polymerization without the need of extra catalysts and the polymerization can be operated in open vessels at ambient condition without the use of glove box. Tetraalkylammonium carboxylate-initiated polymerization on NCA easily affords block copolymers with at least 15 blocks. Moreover, this method avoids tedious purification steps and enables direct polymerization on crude NCAs in aqueous environments to prepare polypeptides and one-pot synthesis of polypeptide nanoparticles. These advantages and the mild polymerization condition of tetraalkylammonium carboxylate-initiated NCA polymerization imply its great potential in functional exploration and application of polypeptides.
我们设计了四烷基铵羧酸盐引发的 α-氨基酸 N-羧酸酐(NCA)超快速聚合反应,以高效合成多肽。羧酸盐作为 NCA 聚合的新型引发剂,无需额外的催化剂即可引发超快速 NCA 聚合,并且聚合可以在环境条件下在开放容器中进行,无需使用手套箱。四烷基铵羧酸盐引发的 NCA 聚合可以轻松制备至少 15 个嵌段的嵌段共聚物。此外,该方法避免了繁琐的纯化步骤,并能够在水相环境中直接对粗 NCA 进行聚合,以制备多肽和一锅法合成多肽纳米粒子。这些优点以及四烷基铵羧酸盐引发的 NCA 聚合的温和聚合条件表明其在多肽的功能探索和应用方面具有巨大的潜力。