mRNA vaccination induces tick resistance and prevents transmission of the Lyme disease agent

莱姆病 伯氏疏螺旋体 滴答声 生物 病毒学 接种疫苗 传输(电信) 免疫学 蜱传疾病 莱姆 医学 抗体 计算机科学 电信
作者
Andaleeb Sajid,Jaqueline Matias,Gunjan Arora,Cheyne Kurokawa,Kathleen DePonte,Xiaotian Tang,Geoffrey E. Lynn,Ming-Jie Wu,Utpal Pal,Norma Olivares Strank,Norbert Pardi,Sukanya Narasimhan,Drew Weissman,Erol Fikrig
出处
期刊:Science Translational Medicine [American Association for the Advancement of Science]
卷期号:13 (620): eabj9827-eabj9827 被引量:137
标识
DOI:10.1126/scitranslmed.abj9827
摘要

Ixodes scapularis ticks transmit many pathogens that cause human disease, including Borrelia burgdorferi. Acquired resistance to I. scapularis due to repeated tick exposure has the potential to prevent tick-borne infectious diseases, and salivary proteins have been postulated to contribute to this process. We examined the ability of lipid nanoparticle–containing nucleoside-modified mRNAs encoding 19 I. scapularis salivary proteins (19ISP) to enhance the recognition of a tick bite and diminish I. scapularis engorgement on a host and thereby prevent B. burgdorferi infection. Guinea pigs were immunized with a 19ISP mRNA vaccine and subsequently challenged with I. scapularis. Animals administered 19ISP developed erythema at the bite site shortly after ticks began to attach, and these ticks fed poorly, marked by early detachment and decreased engorgement weights. 19ISP immunization also impeded B. burgdorferi transmission in the guinea pigs. The effective induction of local redness early after I. scapularis attachment and the inability of the ticks to take a normal blood meal suggest that 19ISP may be used either alone or in conjunction with traditional pathogen-based vaccines for the prevention of Lyme disease, and potentially other tick-borne infections.
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