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Complement Evasion in Borrelia spirochetes: Mechanisms and Opportunities for Intervention

机译:螺旋体螺旋体补补逃避:干预的机制和机会。

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摘要

Lyme disease (LD) is an increasingly prevalent, climate change-accelerated, vector-borne infectious disease with significant morbidity and cost in a proportion of patients who experience ongoing symptoms after antibiotic treatment, a condition known as post-treatment Lyme disease syndrome (PTLDS). Spirochetal bacteria of Borrelia species are the causative agents of LD. These obligate parasites have evolved sophisticated immune evasion mechanisms, including the ability to defeat the innate immune system’s complement cascade. Research on complement function and Borrelia evasion mechanisms, focusing on human disease, is reviewed, highlighting opportunities to build on existing knowledge. Implications for the development of new antibiotic therapies having the potential to prevent or cure PTLDS are discussed. It is noted that a therapy enabling the complement system to effectively counter Borrelia might have lower cost and fewer side-effects and risks than broad-spectrum antibiotic use and could avert the need to develop and administer a vaccine.
机译:莱姆病(LD)是一种越来越普遍的,由气候变化加速,病媒传播的传染病,在抗生素治疗后经历持续性症状的一部分患者中,其发病率和成本都很高,这种情况被称为治疗后莱姆病综合征(PTLDS) )。疏螺旋体属的螺旋菌是LD的病原体。这些专性寄生虫已经进化出复杂的免疫逃逸机制,包括击败先天免疫系统补体级联的能力。审查了以人的疾病为重点的补体功能和疏螺旋体逃逸机制的研究,强调了利用现有知识的机会。讨论了开发具有预防或治疗PTLDS潜力的新抗生素疗法的意义。应当指出,与广谱抗生素使用相比,使补体系统能够有效对抗疏螺旋体的疗法可能具有较低的成本,副作用和风险,并且可以避免开发和施用疫苗的需要。

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