Tick feeding or vaccination with tick antigens elicits immunity to the Ixodes scapularis exoproteome in guinea pigs and humans

肩胛硬蜱 滴答声 抗原 生物 硬蜱 病毒学 免疫原 免疫学 接种疫苗 蜱传疾病 莱姆病 免疫系统 微生物学 抗体 硬蜱科 单克隆抗体
作者
Thomas Hart,Yingjun Cui,Sam R. Telford,Alejandro Marín-López,Keith Calloway,Yile Dai,Jaqueline Matias,Kathleen DePonte,Jillian R. Jaycox,Melody DeBlasio,Dieuwertje Hoornstra,Alexia A. Belperron,Balasubramanian Cibichakravarthy,Emily E. Johnson,Mohamad‐Gabriel Alameh,Garima Dwivedi,Joppe W. Hovius,Linda K. Bockenstedt,Drew Weissman,Aaron M. Ring
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:17 (791)
标识
DOI:10.1126/scitranslmed.ads9207
摘要

Ixodes scapularis is a primary vector of tick-borne pathogens in North America. Repeated exposure to these ticks can induce a humoral response to tick antigens and acquired tick resistance. However, identifying antigens contributing to this resistance is challenging because of the vast number of I. scapularis proteins secreted during feeding. To address this, we developed I. scapularis rapid extracellular antigen monitoring ( Isc REAM), a technique to detect antibody responses to more than 3000 tick antigens. We validated Isc REAM with immunoglobulin G (IgG) from guinea pigs vaccinated with tick antigens, including a cement antigen cocktail that induced tick resistance. Furthermore, we explored the natural response to tick bites by profiling antigens recognized by IgG isolated from a tick-resistant individual, as well as from others with Lyme disease and tick-bitten guinea pigs and mice, to identify 199 recognized antigens. We observed that several antigens contained histamine-binding domains. This work enhances our understanding of the host immune response to I. scapularis and defines immunogen candidates for future antitick vaccines.
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