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载阿司匹林的交联季铵化壳聚糖基水凝胶膜的制备及性能研究。

Preparation and Properties of Crosslinked Quaternized Chitosan-Based Hydrogel Films Ionically Bonded with Acetylsalicylic Acid for Biomedical Materials.

机构信息

Key Laboratory of Coastal Biology and Bioresource Utilization, Yantai Institute of Coastal Zone Research, Chinese Academy of Sciences, Yantai 264003, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Mar Drugs. 2024 Sep 30;22(10):450. doi: 10.3390/md22100450.

Abstract

The aim of the current study is to develop chitosan-based biomaterials which can sustainably release acetylsalicylic acid while presenting significant biological activity. Herein, an innovative ionic bonding strategy between hydroxypropyl trimethyl ammonium chloride chitosan (HACC) and acetylsalicylic acid (AA) was proposed, skillfully utilizing the electrostatic attraction of the ionic bond to achieve the controlled release of drugs. Based on this point, six crosslinked -[(2-hydroxy-3-trimethylammonium)propyl]chitosan acetylsalicylic acid salt (CHACAA) hydrogel films with varying acetylsalicylic acid contents were prepared by a crosslinking reaction. The results of H nuclear magnetic resonance spectroscopy (H NMR) and scanning electron morphology (SEM) confirmed the crosslinked structure, while the obtained hydrogel films possessed favorable thermal stability, mechanical properties, and swelling ability. In addition, the drug release behavior of the hydrogel films was also investigated. As expected, the prepared hydrogel films demonstrated the capability for the sustainable release of acetylsalicylic acid due to ion pair attraction dynamics. Furthermore, the bioactivities of CHACAA-3 and CHACAA-4 hydrogel films with acetylsalicylic acid molar equivalents of 1.25 and 1.5 times those of HACC were particularly pronounced, which not only exhibited an excellent drug sustained-release ability and antibacterial effect, but also had a higher potential for binding and scavenging inflammatory factors, including NO and TNF-α. These findings suggest that CHACAA-3 and CHACAA-4 hydrogel films hold great potential for applications in wound dressing, tissue engineering scaffolds, and drug carriers.

摘要

本研究旨在开发壳聚糖基生物材料,使其能够持续释放乙酰水杨酸,同时具有显著的生物活性。在此,提出了一种新颖的羟丙基三甲基氯化铵壳聚糖(HACC)与乙酰水杨酸(AA)之间的离子键结合策略,巧妙地利用离子键的静电引力实现药物的控制释放。基于这一点,通过交联反应制备了六种不同乙酰水杨酸含量的交联-[(2-羟基-3-三甲基铵)丙基]壳聚糖乙酰水杨酸盐(CHACAA)水凝胶膜。氢核磁共振光谱(H NMR)和扫描电子形态(SEM)的结果证实了交联结构,而所得水凝胶膜具有良好的热稳定性、机械性能和溶胀能力。此外,还研究了水凝胶膜的药物释放行为。不出所料,由于离子对吸引力动力学,所制备的水凝胶膜表现出可持续释放乙酰水杨酸的能力。此外,乙酰水杨酸摩尔当量分别是 HACC 的 1.25 和 1.5 倍的 CHACAA-3 和 CHACAA-4 水凝胶膜具有特别显著的生物活性,不仅表现出优异的药物持续释放能力和抗菌效果,而且对结合和清除炎症因子(包括 NO 和 TNF-α)具有更高的潜力。这些发现表明,CHACAA-3 和 CHACAA-4 水凝胶膜在伤口敷贴、组织工程支架和药物载体等方面具有很大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a9d/11509478/a67d266db3cf/marinedrugs-22-00450-sch001.jpg

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