Yonsei Advanced Science Institute

Logo and Menu

Research

Publications

Jung Ho Cho†, Jung Seung Lee†, Jisoo Shin, Eun Je Jeon, Soohwan An, Yi Sun Choi, and Seung‐Woo Cho* († equally contributed)
Ascidian‐Inspired Fast‐Forming Hydrogel System for Versatile Biomedical Applications: Pyrogallol Chemistry for Dual Modes of Crosslinking Mechanism
Adv. Funct. Mater., 28 (6), 1705244
Date: Dec 15, 2017

Exploitation of unique biochemical and biophysical properties of marine organisms has led to the development of functional biomaterials for various biomedical applications. Recently, ascidians have received great attention, owing to their extraordinary properties such as strong underwater adhesion and rapid self‐regeneration. Specific polypeptides containing 3,4,5‐trihydroxyphenylalanine (TOPA) in the blood cells of ascidians are associated with such intrinsic properties generated through complex oxidative processes. In this study, a bioinspired hydrogel platform is developed, demonstrating versatile applicability for tissue engineering and drug delivery, by conjugating pyrogallol (PG) moiety resembling ascidian TOPA to hyaluronic acid (HA). The HA–PG conjugate can be rapidly crosslinked by dual modes of oxidative mechanisms using an oxidant or pH control, resulting in hydrogels with different mechanical and physical characteristics. The versatile utility of HA–PG hydrogels formed via different crosslinking mechanisms is tested for different biomedical platforms, including microparticles for sustained drug delivery and tissue adhesive for noninvasive cell transplantation. With extraordinarily fast and different routes of PG oxidation, ascidian‐inspired HA–PG hydrogel system may provide a promising biomaterial platform for a wide range of biomedical applications.

 

Copyright and Address

  • ADDRESS IBS Hall 50 Yonsei-ro, Seodaemun-gu, Seoul 03722
  • TEL +82-2-2123-4769   FAX +82-2-2123-4606
  • E-MAIL ibs@yonsei.ac.kr
  • Copyright © IBS Center for NanoMedicine,YONSEI UNIV.
    ALL RIGHTS RESERVED.

Display Page Loading Image

Top