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白色念珠菌的V和ζ电位与生物膜形成相关。

V and ζ-potential of Candida albicans corelate with biofilm formation.

作者信息

Johnson Matthew P, Al Bataineh Mohammad T, Sreedharan Sreejisha P, Jelinek Herbert F, Hughes Michael Pycraft

机构信息

Department of Biomedical Engineering and Biotechnology, Khalifa University of Science and Technology, Shakhbout bin Sultan St., Abu Dhabi, UAE.

Department of Basic Medical Sciences, College of Medicine, Yarmouk University, Irbid, Jordan.

出版信息

Sci Rep. 2025 Jul 2;15(1):22475. doi: 10.1038/s41598-025-06371-5.

Abstract

Microbial biofilms are known to defend against the host's immune system and provide resistant to antimicrobial medications. Biofilms can form on various human organ systems spanning the gastrointestinal, respiratory, cardiovascular, and urinary organ systems. Conditions caused by the yeast Candida albicans can range from irritating thrush, to systemic and life-threatening candidiasis. Initial contact between organism and surface is mediated electrically, with subsequent interactions developed biochemically. Since different cells have different electrical characteristics, we hypothesised that alteration in these properties may align with different strains' propensity for biofilm formation. We used three strains of C. albicans with different tendencies for biofilm formation and filament phenotype (the most filamentous strain nrg1 Δ/Δ, the least filamentous ume6 Δ/Δ, and wildtype DK318), we investigated the passive electrical properties, membrane potential V and ζ-potential at two conductivities. Results suggest V and ζ-potential correlate with a cell's ability to form biofilms, suggesting correlation between membrane potential, ζ-potential and biofilm formation. Understanding this relationship may suggest potential routes to future prevention of biofouling and biofilm-related illness.

摘要

已知微生物生物膜可抵御宿主免疫系统并对抗菌药物产生抗性。生物膜可在跨越胃肠道、呼吸道、心血管和泌尿器官系统的各种人体器官系统上形成。由白色念珠菌引起的病症范围可从刺激性鹅口疮到全身性和危及生命的念珠菌病。生物体与表面之间的初始接触是通过电介导的,随后的相互作用是通过生化方式发展的。由于不同的细胞具有不同的电学特性,我们推测这些特性的改变可能与不同菌株形成生物膜的倾向有关。我们使用了三株具有不同生物膜形成倾向和丝状表型的白色念珠菌(丝状程度最高的菌株nrg1 Δ/Δ、丝状程度最低的ume6 Δ/Δ以及野生型DK318),我们研究了两种电导率下的被动电学特性、膜电位V和ζ电位。结果表明V和ζ电位与细胞形成生物膜的能力相关,这表明膜电位、ζ电位与生物膜形成之间存在相关性。了解这种关系可能为未来预防生物污染和生物膜相关疾病指明潜在途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b33f/12219743/e32f424c5def/41598_2025_6371_Fig1_HTML.jpg

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