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Addition of biological functionality to poly(epsilon-caprolactone) films

Version 2 2024-06-04, 07:38
Version 1 2016-04-20, 13:48
journal contribution
posted on 2024-06-04, 07:38 authored by EL Prime, ZAA Hamid, JJ Cooper-White, GG Qiao
Biodegradable polyesters such as poly(epsilon-caprolactone) (PCL) have a number of biomedical applications; however, their usage is often limited by a lack of biological functionality. In this paper, a PCL-based polymer containing pendent groups activated by 4-nitrophenyl chloroformate (NPC) and reactive toward primary amines has been cast into thin films. The reactivity of the films toward poly(l-lysine) and the cell adhesion peptide, GRGDS, was assessed, and their cell adhesive capabilities were characterized. ATR-FTIR analysis found that NPC functional groups were present on the surface of the cast film, and the synthesis, conjugation, and visualization of a fluorescent molecule on these films further demonstrated the success of this functionalization methodology. The immersion of these films into a solution of either poly(l-lysine) (PLL) or GRGDS in PBS (pH 7.4) and subsequent 3T3 fibroblast adhesion studies demonstrated significant improvement in cell adhesion and spreading over films cast from unmodified PCL. This investigation has shown that this novel NPC-containing polymer can be utilized in many applications where increased cellular adhesion is required, or the coupling of specific molecules to polymer surfaces is of interest.

History

Journal

Biomacromolecules

Volume

8

Pagination

2416-2421

Location

Washington, D.C.

ISSN

1525-7797

eISSN

1526-4602

Language

eng

Publication classification

C1.1 Refereed article in a scholarly journal

Copyright notice

2007, American Chemical Society

Issue

8

Publisher

American Chemical Society

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