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Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity

In this study we report the underlying reasons to why bacteria are present on banknotes and coins. Despite the use of credit cards, mobile phone apps, near-field-communication systems, and cryptocurrencies such as bitcoins which are replacing the use of hard currencies, cash exchanges still make up...

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Autores principales: Vriesekoop, Frank, Chen, Jing, Oldaker, Jenna, Besnard, Flavien, Smith, Reece, Leversha, William, Smith-Arnold, Cheralee, Worrall, Julie, Rufray, Emily, Yuan, Qipeng, Liang, Hao, Scannell, Amalia, Russell, Cryn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5192525/
https://www.ncbi.nlm.nih.gov/pubmed/27886085
http://dx.doi.org/10.3390/microorganisms4040042
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author Vriesekoop, Frank
Chen, Jing
Oldaker, Jenna
Besnard, Flavien
Smith, Reece
Leversha, William
Smith-Arnold, Cheralee
Worrall, Julie
Rufray, Emily
Yuan, Qipeng
Liang, Hao
Scannell, Amalia
Russell, Cryn
author_facet Vriesekoop, Frank
Chen, Jing
Oldaker, Jenna
Besnard, Flavien
Smith, Reece
Leversha, William
Smith-Arnold, Cheralee
Worrall, Julie
Rufray, Emily
Yuan, Qipeng
Liang, Hao
Scannell, Amalia
Russell, Cryn
author_sort Vriesekoop, Frank
collection PubMed
description In this study we report the underlying reasons to why bacteria are present on banknotes and coins. Despite the use of credit cards, mobile phone apps, near-field-communication systems, and cryptocurrencies such as bitcoins which are replacing the use of hard currencies, cash exchanges still make up a significant means of exchange for a wide range of purchases. The literature is awash with data that highlights that both coins and banknotes are frequently identified as fomites for a wide range of microorganisms. However, most of these publications fail to provide any insight into the extent to which bacteria adhere and persist on money. We treated the various currencies used in this study as microcosms, and the bacterial loading from human hands as the corresponding microbiome. We show that the substrate from which banknotes are produced have a significant influence on both the survival and adherence of bacteria to banknotes. Smooth, polymer surfaces provide a poor means of adherence and survival, while coarser and more fibrous surfaces provide strong bacterial adherence and an environment to survive on. Coins were found to be strongly inhibitory to bacteria with a relatively rapid decline in survival on almost all coin surfaces tested. The inhibitory influence of coins was demonstrated through the use of antimicrobial disks made from coins. Despite the toxic effects of coins on many bacteria, bacteria do have the ability to adapt to the presence of coins in their environment which goes some way to explain the persistent presence of low levels of bacteria on coins in circulation.
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spelling pubmed-51925252017-01-03 Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity Vriesekoop, Frank Chen, Jing Oldaker, Jenna Besnard, Flavien Smith, Reece Leversha, William Smith-Arnold, Cheralee Worrall, Julie Rufray, Emily Yuan, Qipeng Liang, Hao Scannell, Amalia Russell, Cryn Microorganisms Article In this study we report the underlying reasons to why bacteria are present on banknotes and coins. Despite the use of credit cards, mobile phone apps, near-field-communication systems, and cryptocurrencies such as bitcoins which are replacing the use of hard currencies, cash exchanges still make up a significant means of exchange for a wide range of purchases. The literature is awash with data that highlights that both coins and banknotes are frequently identified as fomites for a wide range of microorganisms. However, most of these publications fail to provide any insight into the extent to which bacteria adhere and persist on money. We treated the various currencies used in this study as microcosms, and the bacterial loading from human hands as the corresponding microbiome. We show that the substrate from which banknotes are produced have a significant influence on both the survival and adherence of bacteria to banknotes. Smooth, polymer surfaces provide a poor means of adherence and survival, while coarser and more fibrous surfaces provide strong bacterial adherence and an environment to survive on. Coins were found to be strongly inhibitory to bacteria with a relatively rapid decline in survival on almost all coin surfaces tested. The inhibitory influence of coins was demonstrated through the use of antimicrobial disks made from coins. Despite the toxic effects of coins on many bacteria, bacteria do have the ability to adapt to the presence of coins in their environment which goes some way to explain the persistent presence of low levels of bacteria on coins in circulation. MDPI 2016-11-23 /pmc/articles/PMC5192525/ /pubmed/27886085 http://dx.doi.org/10.3390/microorganisms4040042 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Vriesekoop, Frank
Chen, Jing
Oldaker, Jenna
Besnard, Flavien
Smith, Reece
Leversha, William
Smith-Arnold, Cheralee
Worrall, Julie
Rufray, Emily
Yuan, Qipeng
Liang, Hao
Scannell, Amalia
Russell, Cryn
Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity
title Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity
title_full Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity
title_fullStr Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity
title_full_unstemmed Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity
title_short Dirty Money: A Matter of Bacterial Survival, Adherence, and Toxicity
title_sort dirty money: a matter of bacterial survival, adherence, and toxicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5192525/
https://www.ncbi.nlm.nih.gov/pubmed/27886085
http://dx.doi.org/10.3390/microorganisms4040042
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