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用于控制蜱虫和蜱传疾病的转化生物技术。

Translational biotechnology for the control of ticks and tick-borne diseases.

机构信息

SaBio. Instituto de Investigación en Recursos Cinegéticos IREC-CSIC-UCLM-JCCM, Ronda de Toledo s/n, 13005 Ciudad Real, Spain.; Department of Veterinary Pathobiology, Center for Veterinary Health Sciences, Oklahoma State University, Stillwater, OK 74078, USA..

出版信息

Ticks Tick Borne Dis. 2021 Sep;12(5):101738. doi: 10.1016/j.ttbdis.2021.101738. Epub 2021 May 7.

Abstract

Ticks and tick-borne diseases (TBD) represent a challenge for human and animal health worldwide. Climate change, distribution of tick hosts, and ecological and anthropogenically-induced changes contribute to the geographic expansion of ticks and tick-borne pathogens. Traditional control methods are based on the use of acaricides to reduce tick infestations, but vaccines represent a more effective, sustainable and environmentally sound approach for the control of ticks and TBD. Recent application of omics technologies to the study of the mechanisms involved in tick-host-pathogen interactions have advanced the characterization of molecular mechanisms involved in TBD and the identification of candidate vaccine protective antigens. However, as discussed in this opinion paper, translational biotechnology may translate into novel interventions required to advance in addressing the challenge that ticks and TBD represent for world health and economy.

摘要

蜱虫及蜱传疾病(TBD)对全球人类和动物健康构成了挑战。气候变化、蜱虫宿主的分布以及生态和人为引起的变化促使蜱虫和蜱传病原体的地理分布范围不断扩大。传统的控制方法基于使用杀螨剂来减少蜱虫的滋生,但疫苗是一种更有效、可持续和对环境友好的控制蜱虫和 TBD 的方法。近年来,组学技术在研究蜱虫-宿主-病原体相互作用的机制方面的应用,促进了对 TBD 相关分子机制的表征和候选疫苗保护性抗原的鉴定。然而,正如本文所讨论的,转化生物技术可能转化为新的干预措施,以推进解决蜱虫和 TBD 对世界健康和经济构成的挑战。

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