Screening of aggregation properties of cyclic peptides by protein nanopore

Abstract

Cyclic peptides have been a promising source for natural pharmaceutical macromolecules with their specific binding docks and enhanced binding affinities. However, the aggregation of cyclic peptides poses a significant challenge in the compromising efficacy and permeability to targets. To address the challenges in detecting and characterizing such aggregation, we introduce nanopore sensing as a promising solution that overcomes the limitations of conventional methods by leveraging ionic current blockades for label-free, high-sensitivity, real-time detection. This article investigates the aggregation properties of a cyclic peptide library designed through phage display, screening seven cyclic peptides individually and exploring their co-assembling behaviors. Results reveal that cyclic peptide aggregation is not uncommon in biological conditions, while other chemical and physical characterizations further elucidate the detailed mechanism. The study explores the interaction and aggregation properties of cyclic peptides, unveiling the co-assembling phenomena and emphasizing the potential of nanopore-based techniques in advancing peptide aggregation detection and drug development.

Supplementary files

Article information

Article type
Communication
Submitted
10 Mar 2026
Accepted
19 May 2026
First published
20 May 2026

Anal. Methods, 2026, Accepted Manuscript

Screening of aggregation properties of cyclic peptides by protein nanopore

H. Yang, W. Lu, D. Wang, X. Zhang, M. Li, Z. Li, H. Qin, J. Li and G. Qing, Anal. Methods, 2026, Accepted Manuscript , DOI: 10.1039/D6AY00427J

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