一种具有抗氧化性能和促进伤口愈合功能的 TA/Cu 纳米粒子增强羧甲基壳聚糖水凝胶敷料。

A TA/Cu Nanoparticle Enhanced Carboxymethyl Chitosan-Based Hydrogel Dressing with Antioxidant Properties and Promoting Wound Healing.

机构信息

Department of Orthopedics, Guangdong Second Provincial General Hospital, Guangzhou, 510317, People's Republic of China.

Department of Orthopedics, The Sixth Affiliated Hospital of Guangzhou Medical University, Qingyuan, People's Hospital, Qingyuan, 511518, People's Republic of China.

出版信息

Int J Nanomedicine. 2024 Jan 10;19:231-245. doi: 10.2147/IJN.S445844. eCollection 2024.

Abstract

BACKGROUND

As the first line of immune defense and the largest organ of body, skin is vulnerable to damage caused by surgery, burns, collisions and other factors. Wound healing in the skin is a long and complex physiological process that is influenced by a number of different factors. Proper wound care can greatly improve the speed of wound healing and reduce the generation of scars. However, traditional wound dressings (bandages, gauze, etc.) often used in clinical practice have a single function, lack of active ingredients and are limited in use. Hydrogels with three-dimensional network structure are a potential biomedical material because of their physical and chemical environment similar to extracellular matrix. In particular, hydrogel dressings with low price, good biocompatibility, degradability, antibacterial and angiogenic activity are favored by the public.

METHODS

Here, a carboxymethyl chitosan-based hydrogel dressing (CMCS-TA/Cu) reinforced by copper ion crosslinked tannic acid (TA/Cu) nanoparticles was developed. This study investigated the physical and chemical characteristics, cytotoxicity, and angiogenesis of TA/Cu nanoparticles and CMCS-TA/Cu hydrogels. Furthermore, a full-thickness skin defect wound model was employed to assess the in vivo wound healing capacity of hydrogel dressings.

RESULTS

The introduction of TA/Cu nanoparticles not only could increase the mechanical properties of the hydrogel but also continuously releases copper ions to promote cell migration (the cell migration could reach 92% at 48 h) and tubule formation, remove free radicals and promote wound healing (repair rate could reach 90% at 9 days).

CONCLUSION

Experiments have proved that CMCS-TA/Cu hydrogel has good cytocompatibility, antioxidant and wound healing ability, providing an advantageous solution for skin repair.

摘要

背景

皮肤作为人体第一道免疫防线和最大的器官,容易受到手术、烧伤、碰撞等因素的损伤。皮肤的伤口愈合是一个漫长而复杂的生理过程,受到多种不同因素的影响。适当的伤口护理可以极大地提高伤口愈合速度,减少疤痕生成。然而,临床实践中常用的传统伤口敷料(绷带、纱布等)功能单一,缺乏活性成分,使用受限。具有三维网络结构的水凝胶因其物理化学环境与细胞外基质相似,是一种有潜力的生物医学材料。特别是价格低廉、生物相容性好、可降解、具有抗菌和促血管生成活性的水凝胶敷料受到了公众的青睐。

方法

在这里,我们开发了一种由铜离子交联单宁酸(TA/Cu)纳米粒子增强的羧甲基壳聚糖基水凝胶敷料(CMCS-TA/Cu)。本研究考察了 TA/Cu 纳米粒子和 CMCS-TA/Cu 水凝胶的物理化学特性、细胞毒性和血管生成能力。此外,我们还采用全层皮肤缺损创面模型评估了水凝胶敷料的体内创面愈合能力。

结果

引入 TA/Cu 纳米粒子不仅可以提高水凝胶的机械性能,还可以持续释放铜离子,促进细胞迁移(48 小时时细胞迁移率可达 92%)和管腔形成,清除自由基,促进伤口愈合(9 天时愈合率可达 90%)。

结论

实验证明 CMCS-TA/Cu 水凝胶具有良好的细胞相容性、抗氧化和伤口愈合能力,为皮肤修复提供了有利的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/346a/10788072/6d43000130c8/IJN-19-231-g0001.jpg

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