Bifunctional lignocellulose nanofiber hydrogel possessing intriguing pH-responsiveness and self-healing capability towards wound healing applications

自愈水凝胶 生物相容性 伤口愈合 纳米纤维 壳聚糖 盐酸四环素 肿胀 的 双功能 材料科学 化学 生物高聚物 化学工程 生物医学工程 聚合物 纳米技术 高分子化学 复合材料 有机化学 四环素 外科 生物化学 抗生素 工程类 医学 催化作用
作者
Wenwen Li,Gege Cheng,S.G Wang,Yan Jiang,Xiuyu Liu,Qin Huang
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:260: 129398-129398 被引量:1
标识
DOI:10.1016/j.ijbiomac.2024.129398
摘要

Lignocellulose nanofibers (LCNF) obtained from agricultural waste are potential candidates for enhancing composite materials because of their excellent mechanical properties, abundant groups and high biocompatibility. However, the application of LCNF has received limited attention to date from researchers in the healthcare field. Herein, based on the bifunctional group (carboxyl and aldehyde groups) modified LCNF (DCLCNF) and chitosan (CS), we developed a multifunctional bio-based hydrogel (CS-DCLCNF). The addition of lignin-containing DCLCNF strengthened the internal crosslinking and the intermolecular interaction of hydrogels, and the presence of lignin and carboxyl groups increased the mechanical strength of the hydrogel and the adsorption of aromatic drugs. Results revealed that the hydrogels exhibited self-healing, injectable, and high swelling rates. The hydrogels had favorable mechanical strength (G'max of ~16.60 kPa), and the maximum compressive stress was 24 kPa. Moreover, the entire tetracycline hydrochloride (TH) release process was slow and pH-responsive, because of the rich noncovalent and π–π interactions between DCLCNF and TH. The hydrogels also exhibited excellent biocompatibility and antibacterial properties. Notably, the wound healing experiment showed that the hydrogels were beneficial in accelerating wounds healing, which could heal completely in 13 days. Therefore, CS-DCLCNF hydrogels may have promising applications in drug delivery for wound healing.
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