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国际会议参会者携带的带有微生物的手机对公众健康和生物安全构成潜在风险。

Microbial laden mobile phones from international conference attendees pose potential risks to public health and biosecurity.

作者信息

Olsen Matthew, Goldsworthy Adrian, Morgan Mark, Leggett John, Demaneuf Thibaut, Van Der Bruggen Natalia, Singh Gobinddeep, Ghemrawi Rose, Senok Abiola, Almheiri Reem, McKirdy Simon, Alghafri Rashed, Tajouri Lotti

机构信息

Faculty of Health Sciences and Medicine, Bond University, Robina, QLD, Australia.

Faculty of Health Sciences and Medicine, Bond University, Robina, QLD, Australia; Harry Butler Institute, Murdoch University, Perth, WA 6150, Australia.

出版信息

Infect Dis Health. 2025 May;30(2):85-96. doi: 10.1016/j.idh.2024.08.004. Epub 2024 Sep 26.

Abstract

INTRODUCTION

Mobile phones, contaminated with pathogenic microorganisms, have the potential to act as "trojan horses". The microbial signatures present on their surfaces most probably vary across different geographical regions. As a result, mobile phones belonging to international conference attendees may serve as a model for global microbial dissemination, posing potential risks to public health and biosecurity.

AIM

This study aimed to profile the microbes present on mobile phones belonging to delegates attending an international scientific conference through use of metagenomic shotgun DNA sequencing.

METHODS

Twenty mobile phones, representing ten different geographical zones from around the world, were swabbed and pooled together into ten geographical-specific samples for high definition next-generation DNA sequencing. WONCA council members were invited to participate and provided verbal consent. Following DNA extraction, next generation sequencing, to a depth of approximately 10Gbp per sample, was undertaken on a v1.5 Illumina NovaSeq6000 system. Bioinformatic analysis was performed via the CosmosID platform.

RESULTS

A total of 2204 microbial hits were accumulated across 20 mobile phones inclusive of 882 bacteria, 1229 viruses, 88 fungi and 5 protozoa. Of particular concern was the identification of 65 distinct antibiotic resistance genes and 86 virulence genes. Plant, animal and human pathogens, including ESKAPE and HACEK bacteria were found on mobile phones.

DISCUSSION/CONCLUSION: Mobile phones of international attendees are contaminated with many & varied microorganisms. Further research is required to characterize the risks these devices pose for biosecurity and public health. Development of new policies which appropriately address and prevent such risks maybe warranted.

摘要

引言

被致病微生物污染的手机有可能成为“特洛伊木马”。其表面存在的微生物特征很可能因不同地理区域而有所不同。因此,国际会议参会者的手机可能成为全球微生物传播的一个模型,对公共卫生和生物安全构成潜在风险。

目的

本研究旨在通过宏基因组鸟枪法DNA测序分析参加国际科学会议的代表手机上存在的微生物。

方法

从代表世界各地十个不同地理区域的二十部手机上取样,并汇总成十个地理特定样本,用于高清下一代DNA测序。邀请世界家庭医生组织理事会成员参与并获得了口头同意。DNA提取后,在v1.5 Illumina NovaSeq6000系统上对每个样本进行约10Gbp深度的下一代测序。通过CosmosID平台进行生物信息学分析。

结果

20部手机共积累了2204个微生物命中结果,包括882种细菌、1229种病毒、88种真菌和5种原生动物。特别值得关注的是鉴定出了65个不同的抗生素抗性基因和86个毒力基因。在手机上发现了包括ESKAPE和HACEK细菌在内的植物、动物和人类病原体。

讨论/结论:国际参会者的手机被多种微生物污染。需要进一步研究来确定这些设备对生物安全和公共卫生构成的风险。或许有必要制定新政策来适当应对和预防此类风险。

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