Related Experiment Video
Updated: Jan 12, 2026

Author Spotlight: Optimization of Ultrashort Peptide Matrices for Colorectal Cancer Organoids
Published on: May 3, 2024
Amino Acid-Induced Dynamic Networks of Interface-Enriched Adhesive Molecules for High-Strength, Recyclable, and
Kaiyuan Huo1, Huaping Li2, Hongxiang Wang3
1Postgraduate Training Base Alliance of Wenzhou Medical University, Wenzhou Institute, University of Chinese Academy of Sciences, Wenzhou, Zhejiang, 325000, China.
Abstract:
Protein-based bioadhesives are emerging as sustainable alternatives to traditional adhesives, with potential applications in biomedicine, tissue engineering, and electronics. However, challenges such as low adhesive strength, poor substrate and environmental adaptability, and limited recyclability persist. Unlike previous studies that focused on replicating key chemical units, interaction patterns, liquid-liquid phase separation (LLPS), and nano/microscale structures in natural adhesives, a novel strategy is proposed that partially disrupts the noncovalent interactions between polyphenols and proteins through amino acid modulation. This approach facilitates the migration and enrichment of polyphenol adhesive molecules at substrate interfaces along with amino acid, where they synergistically enhance substrate adaptability. The high cohesion and dynamic nature of the resulting network, driven by noncovalent interactions, ensures both high adhesive strength and full recyclability of polyphenol-protein adhesives (PPA). Importantly, this strategy expands the PPA toolbox, incorporating proteins (gelatin, collagen, silk, keratin) and polyphenols (tannic acid, proanthocyanidins, epigallocatechin gallate), broadening their applications in daily-use adhesives, industrial products, and cultural relic restoration across both dry and wet environments. This work enhances the understanding of balancing adhesion and cohesion, providing insights for the design of high-performance bioadhesives.
Related Concept Videos
Laminins are the Adhesive Proteins of Basal Lamina
In humans, the five forms of alpha chains are LAMA 1, LAMA 2, LAMA 3, LAMA 4, and LAMA 5. The four forms of beta chains are LAMB 1, LAMB 2, LAMB 3, and LAMB 4. The three forms of gamma...
Protein-protein Interfaces
Protein-Protein Interfaces
Overview of Cell-Matrix Interactions
Protein Networks
These interactions can be represented through maps depicting protein-protein interaction networks, represented as nodes and edges. Nodes are circles that are representative of a protein,...
Adherens Junctions
Adherens Junctions are Dynamic

