arrow
Return

Proteins, Processing, and Properties of Adhesive Fluid Condensates Purified from Mussels

delete2025-11-20
delete0
delete
OA
AI
M
Mathieu D. Rivard
M
Max Renner‐Rao
N
Nahid Hassanpour
F
Franziska Jehle
C
Changsheng Wang
D
Duy Anh Phạm
D
Daniel J. Jackson
X
Xavier Banquy
M
Matthew J. Harrington *
DOI:10.1002/adfm.202523693delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Humans struggle to design effective underwater adhesives, yet they are essential for numerous technical and biomedical applications. In contrast, biological organisms—most notably mussels—have evolved glues that excel in aquatic environments. While researchers have drawn inspiration from mussels, the resulting materials remain limited by a poor understanding of the native mussel glue formation process. Here, the contents of glue secretory vesicles extracted from mussels are investigated, revealing fluid condensates comprised of the various protein components of the glue. Proteomic analysis confirms the presence of several previously unconfirmed glue proteins in the vesicles, as well as several enzymatic components that may play a role in regulating glue oxidation and cross-linking. Mimicking vesicle conditions, a method is developed to maintain the vesicle proteins in a reconstituted bulk fluid condensate, enabling in vitro analysis and hypothesis testing. A combination of proteomics, vibrational spectroscopy, and nanomechanical adhesion testing reveals the crucial contributions of several physicochemical factors (e.g., pH, sulfate and vanadium ions, sulfhydryls) for the processing and performance of mussel glues as they transition from fluid condensates to microporous solid glues. These findings are crucial for understanding biological glues and the development of next generation bio-inspired underwater adhesives.
Keywords:
bio-inspired materials
DOPA
metal coordination
mussels
underwater adhesion
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

U
university of göttingen
Scholars:
900
Papers: 439
Citations: 0
U
Université de Montréal
Scholars:
949
Papers: 429
Citations: 3.2W
M
McGill University
Scholars:
5.5W
Papers: 4.9W
Citations: 7.0W
researcher View more organizations