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Advances in Microbiology, Infectious Diseases and Public Health

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Cover of 'Advances in Microbiology, Infectious Diseases and Public Health'

Table of Contents

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    Book Overview
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    Chapter 5 Selection of Lactic Acid Bacteria with Probiotic Potential Isolated from the Fermentation Process of “Cupuaçu” ( Theobroma grandiflorum )
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    Chapter 39 The Public Health Impact of the So-Called “Fluad Effect” on the 2014/2015 Influenza Vaccination Campaign in Italy: Ethical Implications for Health-Care Workers and Health Communication Practitioners
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    Chapter 41 Effects of Fibronectin Coating on Bacterial and Osteoblast Progenitor Cells Adherence in a Co-culture Assay
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    Chapter 51 Improving the Bacterial Recovery by Using Dithiothreitol with Aerobic and Anaerobic Broth in Biofilm-Related Prosthetic and Joint Infections
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    Chapter 73 High Prevalence of Human Herpesvirus 8 Infection in Diabetes Type 2 Patients and Detection of a New Virus Subtype
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    Chapter 93 Activity of Norspermidine on Bacterial Biofilms of Multidrug-Resistant Clinical Isolates Associated with Persistent Extremity Wound Infections
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    Chapter 94 Factors Affecting Outcome of Tuberculosis in Children in Italy: An Ecological Study
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    Chapter 195 Genotyping and Antifungal Susceptibility of Dipodascus capitatus Isolated in a Neonatal Intensive Care Unit of a Sicilian Hospital
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    Chapter 196 The Correlation Between Biofilm Production and Catheter-Related Bloodstream Infections Sustained by Candida . A Case Control Study
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    Chapter 197 Inhibition of Urease Enzyme Production and some Other Virulence Factors Expression in Proteus mirabilis by N -Acetyl Cysteine and Dipropyl Disulphide
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    Chapter 198 Immunization with Streptococcal Heme Binding Protein (Shp) Protects Mice Against Group A Streptococcus Infection
Attention for Chapter 93: Activity of Norspermidine on Bacterial Biofilms of Multidrug-Resistant Clinical Isolates Associated with Persistent Extremity Wound Infections
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Chapter title
Activity of Norspermidine on Bacterial Biofilms of Multidrug-Resistant Clinical Isolates Associated with Persistent Extremity Wound Infections
Chapter number 93
Book title
Advances in Microbiology, Infectious Diseases and Public Health
Published in
Advances in experimental medicine and biology, January 2016
DOI 10.1007/5584_2016_93
Pubmed ID
Book ISBNs
978-3-31-960764-1, 978-3-31-960765-8
Authors

Anthony P. Cardile, Ronald L. Woodbury, Carlos J. Sanchez, Sandra C. Becerra, Rebecca A. Garcia, Katrin Mende, Joseph C. Wenke, Kevin S. Akers, Cardile, Anthony P., Woodbury, Ronald L., Sanchez, Carlos J., Becerra, Sandra C., Garcia, Rebecca A., Mende, Katrin, Wenke, Joseph C., Akers, Kevin S.

Abstract

Biofilm formation is a major virulence factor for numerous pathogenic bacteria and is cited as a central event in the pathogenesis of chronic human infections, which is in large part due to excessive extracellular matrix secretion and metabolic changes that occur within the biofilm rendering them highly tolerant to antimicrobial treatments. Polyamines, including norspermidine, play central roles in bacterial biofilm development, but have also recently been shown to inhibit biofilm formation in select strains of various pathogenic bacteria. The aim of this study was to evaluate in vitro the biofilm dispersive and inhibitory activities of norspermidine against multidrug-resistant clinical isolates of Acinetobacter baumannii(n = 4), Klebsiella pneumoniae (n = 3), Pseudomonas aeruginosa (n = 5) and Staphylococcus aureus (n = 4) associated with chronic extremity wound infections using the semi-quantitative 96-well plate method and confocal laser microscopy. In addition to the antibiofilm activity, biocompatibility of norspermidine was also evaluated by measuring toxicity in vitro to human cell lines and whole porcine tissue explants using MTT viability assay and histological analysis. Norspermidine (5-20 mM) had variable dispersive and inhibitory activity on biofilms which was dependent on both the strain and species. Of the clinical bacterial species evaluated herein, A. baumannii isolates were the most sensitive to the effect of norspermidine, which was in part due to the inhibitory effects of norspermidine on bacterial motility and expression of genes involved in the production of homoserine lactones and quorum sensing molecules both essential for biofilm formation. Importantly, exposure of cell lines and whole tissues to norspermidine for prolonged periods of time (≥24 h) was observed to reduce viability and alter tissue histology in a time and concentration dependent manner, with 20 mM exposure having the greatest negative effects on both tissues and individual cell lines. Collectively our findings demonstrate that, similar to other polyamines, norspermidine displays both inhibitory and dispersive activities on biofilms of clinical multidrug-resistant bacterial isolates, in particular for strains of A. baumannii. Additionally our findings suggest that direct application may be considered on tissues, albeit for limited exposure times.

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 35 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 35 100%

Demographic breakdown

Readers by professional status Count As %
Researcher 7 20%
Student > Ph. D. Student 7 20%
Student > Bachelor 4 11%
Student > Postgraduate 2 6%
Other 1 3%
Other 3 9%
Unknown 11 31%
Readers by discipline Count As %
Immunology and Microbiology 4 11%
Pharmacology, Toxicology and Pharmaceutical Science 3 9%
Biochemistry, Genetics and Molecular Biology 3 9%
Medicine and Dentistry 3 9%
Agricultural and Biological Sciences 3 9%
Other 5 14%
Unknown 14 40%
Attention Score in Context

Attention Score in Context

This research output has an Altmetric Attention Score of 1. This is our high-level measure of the quality and quantity of online attention that it has received. This Attention Score, as well as the ranking and number of research outputs shown below, was calculated when the research output was last mentioned on 15 September 2017.
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#20,447,499
of 23,002,898 outputs
Outputs from Advances in experimental medicine and biology
#3,986
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Outputs of similar age
#331,742
of 394,604 outputs
Outputs of similar age from Advances in experimental medicine and biology
#335
of 444 outputs
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