December 1 - 6, 2024
Boston, Massachusetts
Symposium Supporters
2024 MRS Fall Meeting & Exhibit
SB11.09.04

Reduction-Responsive Hydrogel Based on Carboxyethyl-Succinoglycan(CE-SG) for Release of 1,4-Dithiothreitol with Highly Improved Rheological, Antibacterial and Antioxidant Properties

When and Where

Dec 4, 2024
8:00pm - 10:00pm
Hynes, Level 1, Hall A

Presenter(s)

Co-Author(s)

Seunho Jung1,Jae-pil Jeong1,Kyungho Kim1,Yohan Kim1

Konkuk University1

Abstract

Seunho Jung1,Jae-pil Jeong1,Kyungho Kim1,Yohan Kim1

Konkuk University1
The development of exopolysaccharide-based polymers is gaining increasing attention in various industrial biotechnology fields for materials such as thickeners, texture modifiers, anti-freeze agents, antioxidants, and antibacterial agents. High-viscosity carboxyethyl-succinoglycan (CE-SG) was directly synthesized from succinoglycan (SG) isolated from <i>Sinorhizobium meliloti</i> Rm 1021, and its structural, rheological, and physiological properties were investigated. The viscosity of CE-SG gradually increased in proportion to the degree of carboxyethylation substitution. In particular, when the molar ratio of SG and 3-chloropropionic acid was 1:100, the viscosity was significantly improved by 21.18 times at a shear rate of 10 s<sup>-1</sup>. Increased carboxyethylation of SG also improved the thermal stability of CE-SG. Furthermore, the CE-SG solution showed 90.18 and 91.78 % antibacterial effects against Escherichia coli and Staphylococcus aureus and effective antioxidant activity against DPPH and hydroxyl radicals. In particular, CE-SG hydrogels coordinated with Fe<sup>3+</sup> ions, which improved both viscosity and rheological properties, while also exhibiting reduction-responsive drug release through 1,4-dithiothreitol. The results of this study suggest that SG derivatives, such as CE-SG, can be used as functional biomaterials in various fields such as food, cosmetics, and pharmaceutical industries.

Keywords

biomaterial | sol-gel

Symposium Organizers

Rossella Labarile, Consiglio Nazionale delle Ricerche
Marco Lo Presti, UNIBA
Laia Mogas-Soldevila, University of Pennsylvania
Junyong Park, Kumoh National Institute of Technology

Session Chairs

Rossella Labarile
Junyong Park

In this Session