Skin infectome of patients with a tick bite history

有蜱叮咬史的患者的皮肤感染情况

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作者:Jie Zhang, Yuan-Chun Zheng, Yan-Li Chu, Xiao-Ming Cui, Ran Wei, Cai Bian, Hong-Bo Liu, Nan-Nan Yao, Rui-Ruo Jiang, Qiu-Bo Huo, Ting-Ting Yuan, Jie Li, Lin Zhao, Lian-Feng Li, Qian Wang, Wei Wei, Jin-Guo Zhu, Mei-Chao Chen, Yan Gao, Fei Wang, Jin-Ling Ye, Ju-Liang Song, Jia-Fu Jiang, Tommy Tsan-Yuk L

Discussion

Advances in sequencing technologies have revealed that the diversity of tick microbiome and virome goes far beyond our previous understanding. This report not only identifies three new potential pathogens in humans but also shows that the skin barrier is vital in preventing horizontal transmissions of tick-associated bacteria or virus communities to the host. It is the first research on patients' skin infectome after a tick bite and demonstrates that more attention should be paid to the cutaneous response to prevent tick-borne illness.

Methods

A total of 14 skin specimens collected from tick-bite patients with mild to severe symptoms were analyzed through meta-transcriptomic sequencings.

Results

Four bacteria genera were both detected in the skins and ticks, including Pseudomonas, Acinetobacter, Corynebacterium and Propionibacterium, and three tick-associated viruses, Jingmen tick virus (JMTV), Bole tick virus 4 (BLTV4) and Deer tick mononegavirales-like virus (DTMV) were identified in the skin samples. Except of known pathogens such as pathogenic rickettsia, Coxiella burnetii and JMTV, we suggest Roseomonas cervicalis and BLTV4 as potential new agents amplified in the skins and then disseminated into the blood. As early as 1 day after a tick-bite, these pathogens can transmit to skins and at most four ones can co-infect in skins.

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