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June 4, 2026Macromolecules0 citations

Accelerated and Controlled Polymerization of Tryptophan N -Carboxyanhydride

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CJChenlin JiTCTingting CaoLWLuyao Wang

Key Points

  • This work aims to enhance the controlled polymerization of l-tryptophan N-carboxyanhydride for better polypeptide synthesis.
  • Utilized a synergistic organic acid-base catalytic strategy to accelerate polymerization kinetics.
  • Compared polymer properties such as molecular weights and dispersity.
  • Characterized secondary structures and fluorescence properties of synthesized polypeptides.
  • Achieved well-defined PLW with narrow dispersity (Đ < 1.20) and predictable molecular weights.
  • Demonstrated improved fluorescence properties based on Trp content.
  • Provided effective control over ROP, enabling the formation of Trp-rich copolypeptides.

Abstract

Tryptophan (Trp or W) was distinguished among eukaryotic amino acids due to its unique physicochemical properties, enabling diverse applications in biomedical research. However, synthesizing well-defined, high-molecular-weight poly(l-tryptophan) (PLW) via controlled ring-opening polymerization (ROP) of l-tryptophan N-carboxyanhydride (Trp-NCA) remains challenging, primarily due to slow kinetics and interference of the secondary structure. In this work, we present a synergistic organic acid–base catalytic strategy to overcome these obstacles. The organic base disrupts the inhibitory indole–amine interactions, thereby accelerating the polymerization, while the organic acid mitigates uncontrolled two-stage polymerization kinetics by eliminating the initial lag phase. This approach enables well-controlled ROP of NCAs that exhibits features of a living polymerization, thus achieving precise synthesis of PLW homopolymers and Trp-rich copolypeptides with predictable molecular weights (MWs), narrow dispersity (Đ < 1.20), and different segment structures. Appealing MW-dependent secondary structures and Trp content-dependent fluorescence properties were characterized based on these polypeptides. This strategy provides an efficient route to Trp-containing polypeptides, expanding their utility in protein mimicking and functional biomaterials.

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Cite This Study

Ji et al. (2026) studied this question.

synapsesocial.com/papers/6a211549d499ed480b16e88ahttps://doi.org/10.1021/acs.macromol.6c00471
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