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An Inspection into Multifarious Ways to Synthesize Poly(Amino Acid)s

期刊

MACROMOLECULAR RAPID COMMUNICATIONS
卷 42, 期 22, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/marc.202100453

关键词

N-carboxyanhydrides; N-phenoxycarbonyl amino acids; N-thiocarboxyanhydrides; polypeptides; polypeptoids

资金

  1. National Natural Science Foundation of China [21901073, 21674091]
  2. Chenguang Program - Shanghai Education Development Foundation [18CG32]
  3. Shanghai Municipal Education Commission

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This article summarizes the basic features and recent progresses of different methods for preparing PAAs, including polymerizations of NCAs, NTAs, and NPCs, as well as other synthetic routes. NTA polymerizations are a promising alternative pathway to produce narrow-dispersity polypeptides and polypeptoids with designed PMWs up to 55.0 and 57.0 kg mol (-1), respectively.
Poly(alpha-amino acid)s (PAAs) attract growing attention due to their essential role in the application as biomaterials. To synthesize PAAs with desired structures and properties, scientists have developed various synthetic techniques with respective advantages. Here, different approaches to preparing PAAs are inspected. Basic features and recent progresses of these methods are summarized, including polymerizations of amino acid N-carboxyanhydrides (NCAs), amino acid N-thiocarboxyanhydrides (NTAs), and N-phenoxycarbonyl amino acids (NPCs), as well as other synthetic routes. NCA is the most classical monomer to prepare PAAs with high molecular weights (MWs). NTA polymerizations are promising alternative pathways to produce PAAs, which can tolerate nucleophiles including alcohols, mercaptans, carboxyl acids, and water. By various techniques including choosing appropriate solvents or using organic acids as promoters, NTAs polymerize to produce polypeptoids and polypeptides with narrow dispersities and designed MWs up to 55.0 and 57.0 kg mol(-1), respectively. NPC polymerizations are phosgene-free ways to synthesize polypeptides and polypeptoids. For the future prospects, detail investigations into polymerization mechanisms of NTA and NPC are expected. The synthesis of PAAs with designed topologies and assembly structures is another intriguing topic. The advantages and unsettled problems in various synthetic ways are discussed for readers to choose appropriate approaches for PAAs.

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