Establishment and application of a multiplex qPCR panel for multi-host surveillance of tick-Borne pathogens

Tick-borne diseases pose significant public health threats. Non-specific symptoms and co-infections present diagnostic challenges for conventional methods. To address this, we developed the tick-borne pathogen (TBP) Panel, utilizing eight separate multiplex qPCR assays to simultaneously detect 25 TBPs (7 bacteria, 14 viruses, 4 parasites). Optimal Quantification Cycle (Cq) cut-offs were established using nested/semi-nested PCR amplicon sequencing, and digital PCR as reference standards. The Panel was then deployed for screening 2,333 ticks, 59 rodents, and 553 febrile patients. The Panel demonstrated robust analytical performance, achieving limits of detection (LOD99%) being 3.5–131 copies/reaction of plasmid, 102–103 copies/mL of blood and 103–104 copies/tick pool. This study established a tiered determination framework (Cq ≤ 36.6 as positive; Cq 36.6–39.6 requiring dual-replicate confirmation), yielding an overall AUC of 0.979, with 96.5% sensitivity and 96.5% specificity. Screening revealed a diverse pathogen landscape, identifying a total of 14 pathogens in 16.9% of the ticks (395/2,333), revealing a diverse geographical distribution. Five pathogens were identified in 7.9% of AFI patients (25/317), including Severe Fever with Thrombocytopenia Syndrome Virus (SFTSV) and Ehrlichia spp., which were found circulating in local ticks. In the FUO cohort, a single case of Rickettsia spp. was identified. Rodent surveillance identified four pathogens, predominantly Bartonella spp. (67.8%). In conclusion , the rigorously validated TBP Panel enables rapid etiological identification of undifferentiated febrile illnesses, serving as a high-throughput tool that bridges large-scale surveillance with clinical diagnostics to close critical gaps in tick-borne disease management.

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Publication Details

Journal
Emerging Microbes & Infections
Published
2026-09-12
DOI
https://doi.org/10.1080/22221751.2026.2731498
Primary Topic
Vector-borne infectious diseases
Type
article
Field-Weighted Citation Impact
0.00

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article

Establishment and application of a multiplex qPCR panel for multi-host surveillance of tick-Borne pathogens

Biao Duan, Ying Zhang, 蒙新庭, Jin Che et al.
Emerging Microbes & Infections
Vector-borne infectious diseases
article

Establishment and application of a multiplex qPCR panel for multi-host surveillance of tick-Borne pathogens

Biao Duan, Ying Zhang, 蒙新庭, Jin Che, Hai Yan, Aiping Qin, Jing Li, Jiaxun Zhang, Xiaofang Ma, Xiangxiang Sun, Wenjin Mao, Zhen Wang, Jie Liu
article en

Abstract

Tick-borne diseases pose significant public health threats. Non-specific symptoms and co-infections present diagnostic challenges for conventional methods. To address this, we developed the tick-borne pathogen (TBP) Panel, utilizing eight separate multiplex qPCR assays to simultaneously detect 25 TBPs (7 bacteria, 14 viruses, 4 parasites). Optimal Quantification Cycle (Cq) cut-offs were established using nested/semi-nested PCR amplicon sequencing, and digital PCR as reference standards. The Panel was then deployed for screening 2,333 ticks, 59 rodents, and 553 febrile patients. The Panel demonstrated robust analytical performance, achieving limits of detection (LOD99%) being 3.5–131 copies/reaction of plasmid, 102–103 copies/mL of blood and 103–104 copies/tick pool. This study established a tiered determination framework (Cq ≤ 36.6 as positive; Cq 36.6–39.6 requiring dual-replicate confirmation), yielding an overall AUC of 0.979, with 96.5% sensitivity and 96.5% specificity. Screening revealed a diverse pathogen landscape, identifying a total of 14 pathogens in 16.9% of the ticks (395/2,333), revealing a diverse geographical distribution. Five pathogens were identified in 7.9% of AFI patients (25/317), including Severe Fever with Thrombocytopenia Syndrome Virus (SFTSV) and Ehrlichia spp., which were found circulating in local ticks. In the FUO cohort, a single case of Rickettsia spp. was identified. Rodent surveillance identified four pathogens, predominantly Bartonella spp. (67.8%). In conclusion , the rigorously validated TBP Panel enables rapid etiological identification of undifferentiated febrile illnesses, serving as a high-throughput tool that bridges large-scale surveillance with clinical diagnostics to close critical gaps in tick-borne disease management.

Emerging Microbes & InfectionsVol. 15(1)
Qingdao University (CN), Xian Center for Disease Control and Prevention (CN), Lanzhou Veterinary Research Institute (CN), Affiliated Hospital of Qingdao University (CN), Inner Mongolia Comprehensive Disease Prevention and Control Center (CN), Taiwan Centers for Disease Control (TW), China Animal Health and Epidemiology Center (CN), National Institute for Communicable Disease Control and Prevention (CN), Yunnan Institute of Endemic Diseases Control and Prevention (CN), Qingdao Municipal Center for Disease Control and Prevention (CN)
Department of Science and Technology of Shandong Province, Natural Science Foundation of Shandong Province
Openalex Percentile: Top 10%
Vector-borne infectious diseases
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