Literature DB >> 29480295

Unexpected insights into antibacterial activity of zinc oxide nanoparticles against methicillin resistant Staphylococcus aureus (MRSA).

Usha Kadiyala1, Emine Sumeyra Turali-Emre, Joong Hwan Bahng, Nicholas A Kotov, J Scott VanEpps.   

Abstract

Zinc oxide nanoparticles (ZnO-NPs) are attractive as broad-spectrum antibiotics, however, their further engineering as antimicrobial agents and clinical translation is impeded by controversial data about their mechanism of activity. It is commonly reported that ZnO-NP's antimicrobial activity is associated with the production of reactive oxygen species (ROS). Here we disprove this concept by comparing the antibacterial potency of ZnO-NPs and their capacity to generate ROS with hydrogen peroxide (H2O2). Then, using gene transcription microarray analysis, we provide evidence for a novel toxicity mechanism. Exposure to ZnO-NPs resulted in over three-log reduction in colonies of methicillin resistant S. aureus with minimal increase in ROS or lipid peroxidation. The amount of ROS required for the same amount of killing by H2O2 was much greater than that generated by ZnO-NPs. In contrast to H2O2, ZnO-NP mediated killing was not mitigated by the antioxidant, N-acetylcysteine. ZnO-NPs caused significant up-regulation of pyrimidine biosynthesis and carbohydrate degradation. Simultaneously, amino acid synthesis in S. aureus was significantly down-regulated indicating a complex mechanism of antimicrobial action involving multiple metabolic pathways. The results of this study point to the importance of specific experimental controls in the interpretation of antimicrobial mechanistic studies and the need for targeted molecular mechanism studies. Continued investigation on the antibacterial mechanisms of biomimetic ZnO-NPs is essential for future clinical translation.

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Year:  2018        PMID: 29480295      PMCID: PMC5847298          DOI: 10.1039/c7nr08499d

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  57 in total

1.  Anaerobiosis and the activity of enzymes of pyrimidine biosynthesis in Staphylococcus aureus.

Authors:  M B McIllmurray; J Lascelles
Journal:  J Gen Microbiol       Date:  1970-12

2.  Studies on antibacterial activity of ZnO nanoparticles by ROS induced lipid peroxidation.

Authors:  R K Dutta; Bhavani P Nenavathu; Mahesh K Gangishetty; A V R Reddy
Journal:  Colloids Surf B Biointerfaces       Date:  2012-02-07       Impact factor: 5.268

3.  The molecular mechanism of action of bactericidal gold nanoparticles on Escherichia coli.

Authors:  Yan Cui; Yuyun Zhao; Yue Tian; Wei Zhang; Xiaoying Lü; Xingyu Jiang
Journal:  Biomaterials       Date:  2011-12-17       Impact factor: 12.479

4.  Size-dependent bacterial growth inhibition and mechanism of antibacterial activity of zinc oxide nanoparticles.

Authors:  Krishna R Raghupathi; Ranjit T Koodali; Adhar C Manna
Journal:  Langmuir       Date:  2011-03-14       Impact factor: 3.882

5.  Solubility of nano-zinc oxide in environmentally and biologically important matrices.

Authors:  Robert B Reed; David A Ladner; Christopher P Higgins; Paul Westerhoff; James F Ranville
Journal:  Environ Toxicol Chem       Date:  2012-01       Impact factor: 3.742

6.  Lipopolysaccharide Density and Structure Govern the Extent and Distance of Nanoparticle Interaction with Actual and Model Bacterial Outer Membranes.

Authors:  Kurt H Jacobson; Ian L Gunsolus; Thomas R Kuech; Julianne M Troiano; Eric S Melby; Samuel E Lohse; Dehong Hu; William B Chrisler; Catherine J Murphy; Galya Orr; Franz M Geiger; Christy L Haynes; Joel A Pedersen
Journal:  Environ Sci Technol       Date:  2015-08-12       Impact factor: 9.028

7.  Antibacterial activity of ZnO nanoparticle suspensions on a broad spectrum of microorganisms.

Authors:  Nicole Jones; Binata Ray; Koodali T Ranjit; Adhar C Manna
Journal:  FEMS Microbiol Lett       Date:  2007-12-11       Impact factor: 2.742

8.  Topical application of zinc oxide nanoparticles reduces bacterial skin infection in mice and exhibits antibacterial activity by inducing oxidative stress response and cell membrane disintegration in macrophages.

Authors:  Rashmirekha Pati; Ranjit Kumar Mehta; Soumitra Mohanty; Avinash Padhi; Mitali Sengupta; Baskarlingam Vaseeharan; Chandan Goswami; Avinash Sonawane
Journal:  Nanomedicine       Date:  2014-03-06       Impact factor: 5.307

9.  Empirical array quality weights in the analysis of microarray data.

Authors:  Matthew E Ritchie; Dileepa Diyagama; Jody Neilson; Ryan van Laar; Alexander Dobrovic; Andrew Holloway; Gordon K Smyth
Journal:  BMC Bioinformatics       Date:  2006-05-19       Impact factor: 3.169

10.  The hidden universal distribution of amino acid biosynthetic networks: a genomic perspective on their origins and evolution.

Authors:  Georgina Hernández-Montes; J Javier Díaz-Mejía; Ernesto Pérez-Rueda; Lorenzo Segovia
Journal:  Genome Biol       Date:  2008-06-09       Impact factor: 13.583

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  29 in total

Review 1.  Recent Advances in Zinc Oxide Nanostructures with Antimicrobial Activities.

Authors:  Yuchao Li; Chengzhu Liao; Sie Chin Tjong
Journal:  Int J Mol Sci       Date:  2020-11-22       Impact factor: 5.923

2.  Biogenic Synthesis of ZnO Nanoparticles and Its Potential Use as Antimicrobial Agent Against Multidrug-Resistant Pathogens.

Authors:  Sanaa M F Gad El-Rab; Aly E Abo-Amer; Ahlam M Asiri
Journal:  Curr Microbiol       Date:  2020-04-23       Impact factor: 2.188

Review 3.  Antibacterial activities of transient metals nanoparticles and membranous mechanisms of action.

Authors:  Lilit Gabrielyan; Armen Trchounian
Journal:  World J Microbiol Biotechnol       Date:  2019-10-14       Impact factor: 3.312

4.  Effect of ZnO nanoparticles on methicillin, vancomycin, linezolid resistance and biofilm formation in Staphylococcus aureus isolates.

Authors:  Wedad M Abdelraheem; Rasha M M Khairy; Alaa I Zaki; Shaimaa H Zaki
Journal:  Ann Clin Microbiol Antimicrob       Date:  2021-08-21       Impact factor: 3.944

5.  Remedial Aspect of Zinc Oxide Nanoparticles Against Serratia Marcescens and Enterococcus Faecalis.

Authors:  Sinouvassane Djearamane; Zhe Chi Loh; Jun Jie Lee; Ling Shing Wong; Ranjithkumar Rajamani; Priscy Alfredo Luque; Piyush Kumar Gupta; Sharolynne Xiao Tong Liang
Journal:  Front Pharmacol       Date:  2022-06-07       Impact factor: 5.988

6.  Antimicrobial photodynamic activity of gallium-substituted haemoglobin on silver nanoparticles.

Authors:  Ana V Morales-de-Echegaray; Lu Lin; Badhu Sivasubramaniam; Aiganym Yermembetova; Qi Wang; Nader S Abutaleb; Mohamed N Seleem; Alexander Wei
Journal:  Nanoscale       Date:  2020-11-05       Impact factor: 7.790

Review 7.  Nanomaterials in Wound Healing and Infection Control.

Authors:  Ali Pormohammad; Nadia K Monych; Sougata Ghosh; Diana L Turner; Raymond J Turner
Journal:  Antibiotics (Basel)       Date:  2021-04-21

Review 8.  Role of different types of nanomaterials against diagnosis, prevention and therapy of COVID-19.

Authors:  Ferial Ghaemi; Amirhassan Amiri; Mohd Yazid Bajuri; Nor Yuliana Yuhana; Massimiliano Ferrara
Journal:  Sustain Cities Soc       Date:  2021-05-25       Impact factor: 7.587

Review 9.  Maternal Nutritional Status and Development of Atopic Dermatitis in Their Offspring.

Authors:  Chun-Min Kang; Bor-Luen Chiang; Li-Chieh Wang
Journal:  Clin Rev Allergy Immunol       Date:  2021-10       Impact factor: 8.667

Review 10.  Novel approaches for the treatment of methicillin-resistant Staphylococcus aureus: Using nanoparticles to overcome multidrug resistance.

Authors:  Kushal Vanamala; Katyayani Tatiparti; Ketki Bhise; Samaresh Sau; Marc H Scheetz; Michael J Rybak; David Andes; Arun K Iyer
Journal:  Drug Discov Today       Date:  2020-10-20       Impact factor: 7.851

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