Kanti S P Yamini, Mukhtar Mahwash, Cseh Martin, Orosz László, Burián Katalin, Ambrus Rita, Jójárt-Laczkovich Orsolya, Csóka Ildikó
Institute of Pharmaceutical Technology and Regulatory Affairs, University of Szeged, 6720 Szeged, Hungary.
Center of Excellence for Interdisciplinary Research, Development and Innovation, 3D Centre University of Szeged, 6722 Szeged, Hungary.
Biomedicines. 2024 Sep 5;12(9):2032. doi: 10.3390/biomedicines12092032.
Intravascular catheter-associated infections pose a significant threat to the health of patients because of biofilm formation. Hence, it is imperative to exploit cost-effective approaches to improve patient compliance. With this aim, our present study reported the potential of an antimicrobial polymeric gel coating of chitosan (CS) and chlorhexidine (CHX) on the marketed urinary catheters to minimize the risk of biofilm formation. The study involved the implementation of the Quality by Design (QbD) approach by identifying the critical parameters that can affect the coating of the catheter's surface in any possible way. Later, design of experiments (DoE) analysis affirmed the lack of linearity in the model for the studied responses in a holistic manner. Moreover, in vitro studies were conducted for the evaluation of various parameters followed by the antibiofilm study. The coating exhibited promising release of CHX in the artificial urinary media together with retention of the coating on the catheter's surface. Therefore, this study aims to emphasize the importance of a systematic and quality-focused approach by contributing to the development of a safe, effective, and reliable catheter coating to enhance intravascular catheter safety.
血管内导管相关感染由于生物膜的形成对患者健康构成重大威胁。因此,开发具有成本效益的方法以提高患者依从性势在必行。出于这一目的,我们目前的研究报告了壳聚糖(CS)和洗必泰(CHX)抗菌聚合物凝胶涂层应用于市售导尿管以降低生物膜形成风险的潜力。该研究通过识别可能以任何方式影响导管表面涂层的关键参数,采用了质量源于设计(QbD)方法。随后,实验设计(DoE)分析全面证实了所研究响应的模型缺乏线性关系。此外,进行了体外研究以评估各种参数,随后开展了抗生物膜研究。该涂层在人工尿液介质中显示出有前景的CHX释放,同时涂层保留在导管表面。因此,本研究旨在通过推动开发安全、有效且可靠的导管涂层以提高血管内导管安全性,强调系统且注重质量的方法的重要性。