Rodrigues Thais B, Petrick Jay S
GreenLight Biosciences, Inc., Medford, NC, United States.
Bayer Crop Science, Chesterfield, MO, United States.
Front Plant Sci. 2020 Apr 23;11:407. doi: 10.3389/fpls.2020.00407. eCollection 2020.
The potential of double-stranded RNAs (dsRNAs) for use as topical biopesticides in agriculture was recently discussed during an OECD (Organisation for Economic Co-operation and Development) Conference on RNA interference (RNAi)-based pesticides. Several topics were presented and these covered different aspects of RNAi technology, its application, and its potential effects on target and non-target organisms (including both mammals and non-mammals). This review presents information relating to RNAi mechanisms in vertebrates, the history of safe RNA consumption, the biological barriers that contribute to the safety of its consumption, and effects related to humans and other vertebrates as discussed during the conference. We also review literature related to vertebrates exposed to RNA molecules and further consider human health safety assessments of RNAi-based biopesticides. This includes possible routes of exposure other than the ingestion of potential residual material in food and water (such as dermal and inhalation exposures during application in the field), the implications of different types of formulations and RNA structures, and the possibility of non-specific effects such as the activation of the innate immune system or saturation of the RNAi machinery.
近期,在经合组织(经济合作与发展组织)举办的一场关于基于RNA干扰(RNAi)的农药的会议上,探讨了双链RNA(dsRNA)作为农业局部生物农药的潜力。会上介绍了几个主题,涵盖了RNAi技术的不同方面、其应用以及对靶标和非靶标生物(包括哺乳动物和非哺乳动物)的潜在影响。本综述呈现了会议期间讨论的与脊椎动物RNAi机制、安全RNA摄入的历史、有助于其摄入安全性的生物屏障以及与人类和其他脊椎动物相关的影响有关的信息。我们还回顾了与接触RNA分子的脊椎动物相关的文献,并进一步考虑基于RNAi的生物农药的人类健康安全评估。这包括除了摄入食物和水中潜在残留物质之外的可能接触途径(例如在田间施用期间的皮肤接触和吸入接触)、不同类型制剂和RNA结构的影响,以及诸如激活先天免疫系统或使RNAi机制饱和等非特异性效应的可能性。