Geranium leaf-mediated synthesis of silver nanoparticles and their transcriptomic effects on Candida albicans

Author:

Serrano-Díaz Paloma12,Williams David W.3,Vega-Arreguin Julio4,Manisekaran Ravichandran2,Twigg Joshua3,Morse Daniel3,García-Contreras René2,Arenas-Arrocena Ma Concepción2,Acosta-Torres Laura Susana2

Affiliation:

1. Universidad Nacional Autónoma de México, Av. Universidad 3004, Copilco Universidad , Coyoacán , 04510 Ciudad de México, CDMX , Mexico

2. Interdisciplinary Research Laboratory (LII), Nanostructures and Biomaterials Area, Escuela Nacional de Estudios Superiores Unidad León, Universidad Nacional Autónoma de México, Predio el Saucillo y el Potrero, Comunidad de los Tepetates , 37684 , León , Mexico

3. School of Dentistry, College of Biomedical and Life Sciences, Cardiff University , Cardiff , United Kingdom

4. Agri-Genomics Laboratory, Interdisciplinary Research Laboratory (LII), National School of Higher Studies (ENES) León Unit, Predio el Saucillo y el Potrero, Comunidad de los Tepetates , 37684 , León , Mexico

Abstract

Abstract Candida albicans is the most predominant fungal species isolated from medical devices, including catheters, heart valves, and dental prostheses. In recent years, it has been demonstrated to be resistant to many antifungals; therefore, silver nanoparticles (AgNPs) have been proposed as an alternative. But only a handful of research is contributed to omic-based studies to study the various impacts of AgNPs on Candida species and other microorganisms. Thus, the study aims to biosynthesize AgNPs using Pelargonium-hortorum leaf and test its antifungal, cytotoxicity, and global gene expression on Candida through transcriptomic profiling. The leaf-assisted AgNPs resulted in spherical shapes with a particle size of 38 nm. The anticandidal effect demonstrated that the Minimum inhibitory concentration was 25 μg·mL−1. Later, the cytotoxicity assay reported a moderate impact on the human gingival fibroblast cells. Finally, the transcriptomic analysis demonstrated the differential gene expression of 3,871 upregulated and 3,902 downregulated genes. Thus, proving the anticandidal effect of AgNPs on Candida through RNA-seq experiments and the regulated genes is highly important to cell wall integrity, adherence, and virulence.

Publisher

Walter de Gruyter GmbH

Subject

Health, Toxicology and Mutagenesis,Industrial and Manufacturing Engineering,Fuel Technology,Renewable Energy, Sustainability and the Environment,General Chemical Engineering,Environmental Chemistry

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