Understanding the antimicrobial mechanism of TiO2-based nanocomposite films in a pathogenic bacterium

Понимание антимикробного механизма нанокомпозитных пленок на основе TiO₂ у патогенной бактерии
Anna Kubacka, María Suárez‐Diez, David Rojo, Rafael Bargiela, Sergio Ciordia, Inés Zapico, Juan Pablo Albar, Coral Barbas, Vítor A. P. Martins dos Santos, Marcos Fernández–García, Manuel Ferrer
2014-02-19

Pseudomonas aeruginosa PAO1TiO2 photocatalysisantimicrobial mechanismphotobiocidal nanocompositesradical-mediated action
Titania (TiO₂)-based nanocomposites subjected to light excitation are remarkably effective in eliciting microbial death. However, the mechanism by which these materials induce microbial death and the effects that they have on microbes are poorly understood. Here, we assess the low dose radical-mediated TiO₂ photocatalytic action of such nanocomposites and evaluate the genome/proteome-wide expression profiles of Pseudomonas aeruginosa PAO1 cells after two minutes of intervention. The results indicate that the impact on the gene-wide flux distribution and metabolism is moderate in the analysed time span. Rather, the photocatalytic action triggers the decreased expression of a large array of genes/proteins specific for regulatory, signalling and growth functions in parallel with subsequent selective effects on ion homeostasis, coenzyme-independent respiration and cell wall structure. The present work provides the first solid foundation for the biocidal action of titania and may have an impact on the design of highly active photobiocidal nanomaterials.
1
After two minutes of treatment, Pseudomonas aeruginosa PAO1 showed only moderate changes in genome-wide metabolic flux and metabolism.
2
Light-excited TiO₂-based nanocomposite films induce antimicrobial effects through low-dose, radical-mediated photocatalytic activity.
3
Photocatalytic exposure broadly reduced expression of genes and proteins involved in regulation, signaling, and growth.
4
The treatment subsequently produced selective effects on ion homeostasis, coenzyme-independent respiration, and cell-wall structure.
5
These findings establish a mechanistic foundation for titania’s biocidal action and can guide the design of more active photobiocidal nanomaterials.

TiO₂-based nanocomposite films under light excitation acting on Pseudomonas aeruginosa PAO1 cells

The low-dose radical-mediated photocatalytic biocidal mechanism and its effects on gene/protein expression, ion homeostasis, respiration, and cell-wall structure

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2014-02-19
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Anna Kubacka
María Suárez‐Diez
David Rojo
Rafael Bargiela
Sergio Ciordia
Inés Zapico
Juan Pablo Albar
Coral Barbas
Vítor A. P. Martins dos Santos
Marcos Fernández–García
Manuel Ferrer
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