4.7 Article

Injectable, self-healable and adhesive hydrogels using oxidized Succinoglycan/chitosan for pH-responsive drug delivery

期刊

CARBOHYDRATE POLYMERS
卷 284, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2022.119195

关键词

Hydrogels; Chitosan (CS); Oxidized succinoglycan dialdehyde (OSG); Self-healing; Injectable; pH-responsive drug release

资金

  1. National Research Foundation of Korea (NRF) - Korea government (MSIT) [NRF-2021R1A2C1013120, 2020R1A6A3A1307088312]
  2. Technology Innovation Program (Development of biomaterials based on novel microbial exopolysacchrides) [20016324]

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The OSG/CS hydrogel prepared by aldehyde-amine Schiff-base reaction showed excellent thermal stability and mechanical strength, as well as high compressive stress, adhesive strength, and antibacterial effect. Furthermore, it exhibited a pH-controlled drug release pattern and good biocompatibility.
We prepared chitosan (CS) based multifunctional hydrogels using oxidized succinoglycan (OSG) with a semidissolving acidified sol-gel transition method. OSG cross-linked CS hydrogels (OSG/CS) was prepared by aldehyde-amine Schiff-base reaction. OSG/CS increased not only thermal stability but also improved mechanical strength by 5.75 times. Through the tensile and strain sweep test, OSG/CS showed excellent self-healing properties by 98.82% and 99.89%, respectively. It showed the high compressive stress of 173 kPa at 60% strain, the adhesive strength of 2763 kPa, and the antibacterial effect of 90%. Furthermore, OSG/CS showed a pHcontrolled drug release pattern, where a change of pH from 7.4 to 2.0 accelerated for 5-fluorouracil release from 60% to 90%. WST-8 assay demonstrated that OSG/CS maintained 97.30% cell viability and 98.84% cell proliferation after 7 days, indicating the potential as biocompatible hydrogel materials such as wound healing, tissue engineering and drug release systems.

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