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基于尿管抗菌层层涂层的药物递送系统:实验与模拟方法

Drug delivery system based on an antibacterial layer-by-layer coating on urinary catheters: an experimental and simulation approach.

作者信息

Pulido Ruth, Naveas Nelson, Fernández-Alonso Francisco Javier, Manso-Silván Miguel, Soriano Leonardo, Torres-Ulloa Carlos, Mena-Ulecia Karel, Recio-Sánchez Gonzalo, Garcia-Sandoval Juan Paulo, Hernández-Montelongo Jacobo

机构信息

Departamento de Química, Universidad de Antofagasta, Antofagasta, Chile.

Departamento de Física Aplicada, Universidad Autónoma de Madrid, Campus de Cantoblanco, Madrid, Spain.

出版信息

Front Bioeng Biotechnol. 2025 Aug 29;13:1614509. doi: 10.3389/fbioe.2025.1614509. eCollection 2025.

Abstract

Urinary catheters (UCs) are critical in biomedical applications, but prolonged use increases the risk of catheter-associated urinary tract infections (CAUTIs), a leading cause of healthcare-associated infections (HAIs). The present study presents a dual strategy to create an antibacterial surface on commercial Foley silicone UCs by combining a contact-killing effect with the controlled release of antimicrobial compounds. We designed a drug delivery system using a layer-by-layer (LbL) antibacterial coating of carboxymethylcellulose (CMC) and chitosan-silver (CHI-Ag) complexes, with ciprofloxacin (CFX) as the model drug. The resulting LbL coating, about 1 thick, incorporated and demonstrated a high capacity for CFX loading, releasing over twice the amount ( ) compared to uncoated UCs ( ). The antibacterial efficacy was significantly higher in the LbL-coated samples, particularly against compared to . Drug release experiments, modeled using Fick's second law, indicated a diffusivity of . Our mathematical model predicts how variations in drug loading and rest times impact release profiles. Finally, molecular dynamics simulations suggested strong compatibility between CFX and the LbL layers, though with relatively low stability. This dual strategy holds promise for reducing CAUTIs effectively.

摘要

导尿管在生物医学应用中至关重要,但长期使用会增加导尿管相关尿路感染(CAUTIs)的风险,而CAUTIs是医疗相关感染(HAIs)的主要原因。本研究提出了一种双重策略,通过将接触杀灭作用与抗菌化合物的控释相结合,在商用弗利硅酮导尿管上创建抗菌表面。我们设计了一种药物递送系统,使用羧甲基纤维素(CMC)和壳聚糖-银(CHI-Ag)复合物的层层(LbL)抗菌涂层,并以环丙沙星(CFX)作为模型药物。所得的LbL涂层厚度约为1 ,包含并显示出对CFX的高负载能力,与未涂层的导尿管( )相比,释放量超过两倍( )。LbL涂层样品的抗菌效果显著更高,尤其是与 相比对 的抗菌效果。使用菲克第二定律建模的药物释放实验表明扩散系数为 。我们的数学模型预测了药物负载和静置时间的变化如何影响释放曲线。最后,分子动力学模拟表明CFX与LbL层之间具有很强的相容性,尽管稳定性相对较低。这种双重策略有望有效降低CAUTIs的发生率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8c6/12426174/afc0ebc3e374/fbioe-13-1614509-g001.jpg

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