Swan Jaclyn, Cameron Timothy C, Spithill Terry W, Beddoe Travis
Department of Ecological Plant and Animal Science, School of Agriculture, Biomedicine and Environment, La Trobe University, Bundoora, VIC 3086, Australia.
Biomolecules. 2025 Aug 26;15(9):1235. doi: 10.3390/biom15091235.
The zoonotic disease fasciolosis poses a significant global threat to both humans and livestock. The causative agent of fasciolosis is , which is commonly referred to as liver fluke. The emergence of drug resistance has underscored the urgent need for new therapeutic treatments against . The tegument surface of is characterized by a dynamic syncytial layer surrounded by a glycocalyx, which serves as a crucial interface in host-parasite interactions, facilitating functions such as nutrient absorption, sensory input, and defense against the host immune response. Despite its pivotal role, only recently have we delved deeper into understanding glycans at the host-parasite interface and the glycosylation of hidden antigens. These glycan antigens have shown promise for vaccine development or as targets for drug manipulation across various pathogenic species. This review aims to consolidate current knowledge on the glycosylation of , exploring glycan motifs identified through generic lectin probing and mass spectrometry. Additionally, it examines the interaction of glycoconjugates with lectins from the innate immune systems of both ruminant and human host species. An enhanced understanding of glycans' role in biology and their critical involvement in host-parasite interactions will be instrumental in developing novel strategies to combat these parasites effectively. In the future, a more comprehensive approach may be adopted in selecting and designing potential vaccine targets, integrating insights from glycosylation studies to improve efficacy.
人畜共患疾病肝片吸虫病对人类和牲畜都构成了重大的全球威胁。肝片吸虫病的病原体是,通常被称为肝吸虫。耐药性的出现凸显了对抗的新治疗方法的迫切需求。的体表以被糖萼包围的动态合胞体层为特征,糖萼在宿主-寄生虫相互作用中起着关键作用,促进营养吸收、感觉输入和抵御宿主免疫反应等功能。尽管其具有关键作用,但直到最近我们才更深入地了解宿主-寄生虫界面处的聚糖以及隐藏抗原的糖基化。这些聚糖抗原在疫苗开发或作为针对各种致病物种的药物操纵靶点方面显示出前景。本综述旨在巩固关于糖基化的现有知识,探索通过通用凝集素探测和质谱法鉴定的聚糖基序。此外,它还研究了糖缀合物与反刍动物和人类宿主物种先天免疫系统中的凝集素的相互作用。增强对聚糖在生物学中的作用及其在宿主-寄生虫相互作用中的关键参与的理解,将有助于制定有效对抗这些寄生虫的新策略。未来,在选择和设计潜在疫苗靶点时可能会采用更全面的方法,整合糖基化研究的见解以提高疗效。