Impact of DMPEI on Biofilm Adhesion on Latex Urinary Catheter

生物膜 粘附 白色念珠菌 导尿管 接触角 微生物学 导管 金黄色葡萄球菌 润湿 化学 大肠杆菌 材料科学 生物 细菌 外科 医学 复合材料 生物化学 遗传学 有机化学 基因
作者
Vinícius S. Tarabal,Flávia Gontijo da Silva,Rubén D. Sinisterra,Daniel Bonoto Gonçalves,José Silva,José Mauro Granjeiro,Marcelo Gomes Speziali,Paulo Afonso Granjeiro
出处
期刊:Recent Patents on Biotechnology [Bentham Science Publishers]
卷期号:15 (1): 51-66 被引量:3
标识
DOI:10.2174/1872208315666210215084127
摘要

Microorganisms can migrate from the external environment to the patient's organism through the insertion of catheters. Despite being indispensable medical device, the catheter surface can be colonized by microorganisms and become a starting point for biofilm formation. Therefore, new technologies are being developed in order to modify surfaces to prevent the adhesion and survival of microorganisms. Patents with the use of DMPEI have been filed.In the present work, we coated latex catheter surfaces with 2 mg mL-1 DMPEI in different solvents, evaluated the wettability of the surface and the anti- biofilm activity of the coated catheter against Escherichia coli, Staphylococcus aureus, and Candida albicans.We coated the inner and outer catheter surfaces with 2 mg mL-1 of DMPEI solubilized in butanol, dimethylformamide, and cyclohexanone and the surfaces were analyzed visually. Contact angle measurement allowed the analysis of the wettability of the surfaces. The CFU mL-1 count evaluated E. coli, S. aureus, and C. albicans adhesion onto the control and treated surfaces.The contact angle decreased from 50.48º to 46.93º on the inner surface and from 55.83º to 50.91º on the outer surface of latex catheters coated with DMPEI. The catheter coated with DMPEI showed anti-biofilm activity of 83%, 88%, and 93% on the inner surface and 100%, 92%, and 86% on the outer surface for E. coli, S. aureus, and C. albicans, respectively.Latex catheter coated with DMPEI efficiently impaired the biofilm formation both on the outer and inner surfaces, showing a potential antimicrobial activity along with a high anti-biofilm activity for medical devices.

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