Conference Guide(参会指南): https://isncm2021.aconf.org/news.html

The 3rd International Symposium on Nanocellulosic Materials

November 19-21, 2021 | Guangzhou, China

Biocompatible and Antibacterial Hydrogels Dual-Reinforced by Cellulose as Ultrastretchable and Self-Healing Wound Dressing
ID:39 Submission ID:85 View Protection:PRIVATE Updated Time:2021-10-29 10:48:41 Hits:169 Oral Presentation

Start Time:Pending (Asia/Shanghai)

Duration:Pending

Session:[No Session] » [No Session Block]

No files

Abstract

Hydrogels as a wound dressing, integrated with ultrastretchability, rapid self-healing, and excellent antimicrobial activity, are in high demand, particularly for joint skin wound healing. Herein, a multifunctional and ductile composite hydrogel was developed using poly(vinyl alcohol) (PVA)-borax gel as a matrix that was synergized or dual-reinforced with dopamine-grafted oxidized carboxymethyl cellulose (OCMC-DA) and cellulose nanofibers (CNF). Moreover, neomycin (NEO), an aminoglycoside antibiotic with multifunctional groups, was incorporated into the hydrogel network as both an antibacterial agent and a cross-linker. The dynamic reversible borate ester linkages and hydrogen bonds between OCMC-DA, PVA, and CNF, along with dynamic cross-linking imine linkages between NEO and OCMC-DA, endowed the hydrogel with excellent self-healing ability and stretchability (3300%). The as-reinforced networks enhanced the mechanical properties of hydrogels significantly. More remarkably, the composite hydrogel with improved biodegradability and biocompatibility is pH-responsive and effective against a broad spectrum of bacteria, which is attributed to the controllable release of NEO for steady availability of the antibiotic on the wound location. Overall, the antimicrobial hydrogel with rapid self-healing and reliable mechanical properties holds significant promise as dressing material for wound healing.

Keywords
cellulose,hydrogel,wound healing,self-healing,antibacterial
Speaker
Farzad Seidi
Nanjing Forestery University

Submission Author
Farzad Seidi Nanjing Forestery University
Yajie Zhong Nanjing Forestry University
Huining Xiao University of New Brunswick
Yongcan Jin Nanjing Forestry University
Comment submit
Verification code Change another
All comments

Contacts

Miss. Scarlett

Mobile: +86-15201086188

E-mail: scarlett@chytey.com

Prof. Tao Song

Mobile: +86-13286898523

E-mail: songt@scut.edu.cn

Dr. Ruitao Cha

Mobile: +86-13752018935

Email: chart@nanoctr.cn

Dr. Chao Tian

Mobile: +86-18612982185

Email: ptrc2008@163.com