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Boronic acid conjugated polyacrylate coating: A strategy for material-independent surface functionalization.

Authors :
Kang, Jumi
Kim, Yuejin
Park, Hyeona
Lee, Kyueui
Source :
Applied Surface Science. Jun2024, Vol. 657, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

One-step surface functionalization method utilizing boronic acid grafted polyacrylate (PSA-BA). [Display omitted] • Material-independent method for functionalizing biomaterial surfaces. • Coating with boronic acid-grafted polyacrylate offers multifunctionality to surfaces. • Proof-of-concept studies to demonstrate the potential of polyacrylate-based boronic acid functionalization in the field of biomaterials. • Methodology poised to enhance the biomaterial field by offering a superior alternative for surface functionalization. Most biomaterial surfaces are non-functional, which inevitably requires additional functionalization steps. However, these steps are typically material-dependent; only a few limited methods, such as catechol functionalization using polydopamine coating, have been reported as material-independent for surface modification. In this study, we developed a one-step boronic acid surface functionalization method utilizing a polyacrylate that contains both butyl and boronic acid groups. The butyl group exhibits strong interfacial adhesion due to its low glass transition temperature (T g), which maintains its softness and tackiness, thereby facilitating attachment to various substrates. Meanwhile, the boronic acid acts as a functional group for surface modification. Various substrates, including polymers, metals, and ceramics widely used in implants, were successfully coated with the polyacrylate, bestowing boronic acid functionality on the surface. Given that boronic acid is one of the most widely applied functional groups in the biomaterials field, we anticipate that our methodology will be applicable in developing various biomedical applications such as antifouling coatings, biosensors, and bioadhesives. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01694332
Volume :
657
Database :
Academic Search Index
Journal :
Applied Surface Science
Publication Type :
Academic Journal
Accession number :
176034130
Full Text :
https://doi.org/10.1016/j.apsusc.2024.159793