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基于原位水相香料提取物的抗真菌封管策略用于挽救被生物膜凝胶污染的Foley导尿管

In Situ Aqueous Spice Extract-Based Antifungal Lock Strategy for Salvage of Foley's Catheter Biofouled with Biofilm Gel.

作者信息

Sadanandan Bindu, Vijayalakshmi Vaniyamparambath, Shetty Kalidas, Rathish Adithya, Shivkumar Harshala, Gundreddy Malavika, Narendra Nikhil Kumar Kagganti, Devaiah Nethra Machamada

机构信息

Department of Biotechnology, M S Ramaiah Institute of Technology, Bengaluru 560054, Karnataka, India.

Department of Plant Sciences, North Dakota State University, Fargo, ND 58105, USA.

出版信息

Gels. 2025 Jan 1;11(1):23. doi: 10.3390/gels11010023.

Abstract

forms a gel-like biofilm in the Foley's catheter (FC) causing tenacious biofouling and severe urinary tract infections (UTIs). For the first time, a spice extract-based antifungal lock therapy (ALT) has been developed to inhibit the gel matrix in FC. Aqueous extracts of garlic, clove, and Indian gooseberry were used as ALT lock solutions and tested against biofilm-forming multidrug-resistant clinical isolates of . Reduction in the gel matrices formation in the catheter was confirmed by Point inoculation, MTT assay, CFU, and SEM analysis at 12 and 24 h of incubation. Garlic was effective in controlling both M207 and S470; however, clove and gooseberry effectively controlled the latter. As evidenced by CFU assay, there were 82.85% and 99.68% reductions in the growth of M207 and S470, respectively, at 24 h of incubation. SEM revealed a switch from the biofilm to the yeast mode and a drastic reduction in cell numbers, with mostly clumped or lysed cells. The study will provide an impetus to the development of novel spice extract-based ALT, reducing the selection pressure on the pathogen and lowering antimicrobial resistance. Further research in this area has the potential to leverage clinical applications.

摘要

在导尿管(FC)中形成凝胶状生物膜,导致顽固的生物污垢和严重的尿路感染(UTIs)。首次开发了一种基于香料提取物的抗真菌封管疗法(ALT)来抑制FC中的凝胶基质。大蒜、丁香和余甘子的水提取物被用作ALT封管溶液,并针对形成生物膜的多重耐药临床分离株进行了测试。通过点接种、MTT试验、CFU和SEM分析,在孵育12小时和24小时时确认了导管中凝胶基质形成的减少。大蒜对M207和S470均有效;然而,丁香和余甘子有效地控制了后者。CFU试验表明,在孵育24小时时,M207和S470的生长分别减少了82.85%和99.68%。SEM显示从生物膜模式转变为酵母模式,细胞数量急剧减少,大多数细胞聚集或裂解。该研究将推动新型基于香料提取物的ALT的开发,降低病原体的选择压力并降低抗菌耐药性。该领域的进一步研究有可能推动临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1e8/11765466/d51b8caa7bfb/gels-11-00023-g001a.jpg

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