Chen Tianzi, Liu Yin, Gao Zhanshan, Gao Yue, Chen Haijin, Ye Haonan, Luo Qiuhao, Wang Kefeng, Wu Dongdong
National Engineering Research Center for Biomaterials, College of Biomedical Engineering, Sichuan University, Chengdu, 610064, Sichuan, China.
West China School of Stomatology, Sichuan University, Chengdu, Sichuan 610041, China.
Angew Chem Int Ed Engl. 2025 Jan 21;64(4):e202415809. doi: 10.1002/anie.202415809. Epub 2024 Oct 31.
Peptide-based nanofibers are promising materials for many essential applications and can be generalized into two categories, self-assembling peptide nanofibers (SAPNs) and poly(amino acid) nanofibers (PAANs). Non-covalent SAPNs are sequence-controllable, but poorly stable and not suitable for post-modification. While covalent PAANs are post-modifiable, however, their sequences are either monotonic or undefined. The nanofibers obtained by head-to-tail covalent coupling polymerization of sequence-known peptides, which we call series-connected peptide nanofibers (SCPNs), promise to have the advantages of both SAPNs and PAANs, but they are barely reported. The undesired backbiting effect during the head-to-tail polymerization is one of the possible challenges. Here, we present a template-assisted strategy to trigger the flexible-to-rigid transition of peptide units, which can avoid the backbiting effect and enable consecutive intermolecular polymerization of peptides to produce desired sequence-controlled covalent SCPNs. SCPNs are highly stable and can function as excellent parent materials for various post-processing to create diverse hierarchical materials independent of the peptide sequence. Moreover, SCPNs allow for the display of predetermined functional groups at regular intervals along the nanofibers by pre-modification of the initial peptide sequence. SCPNs represent a new category of peptide-based nanofibers with outstanding performances and vast potential.
基于肽的纳米纤维是许多重要应用中很有前景的材料,可大致分为两类:自组装肽纳米纤维(SAPNs)和聚氨基酸纳米纤维(PAANs)。非共价的SAPNs具有序列可控性,但稳定性较差,不适合进行后修饰。而共价的PAANs虽然可以进行后修饰,但其序列要么单调要么不明确。通过已知序列肽的头对尾共价偶联聚合得到的纳米纤维,我们称之为串联连接肽纳米纤维(SCPNs),有望兼具SAPNs和PAANs的优点,但相关报道很少。头对尾聚合过程中不期望的分子内回咬效应是可能面临的挑战之一。在此,我们提出一种模板辅助策略来触发肽单元的由柔性到刚性的转变,这可以避免回咬效应,并使肽进行连续的分子间聚合以产生所需的序列可控共价SCPNs。SCPNs高度稳定,可作为各种后处理的优良母体材料,以制备与肽序列无关的各种分级材料。此外,通过对初始肽序列进行预修饰,SCPNs能够沿着纳米纤维以规则间隔展示预定的官能团。SCPNs代表了一类具有出色性能和巨大潜力的新型基于肽的纳米纤维。