用生物测定法评估昆虫对生长调节剂的抗性:甲氧丁烯和吡丙醚抑制三种媒介蚊子羽化的系统综述和荟萃分析。

IF 2.8 4区 医学 Q2 INFECTIOUS DISEASES
Mark E Clifton, Kristina Lopez
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引用次数: 0

摘要

本系统综述和荟萃分析旨在:(1)表征吡丙醚和甲氧丁烯对库蚊羽化抑制(IE50、IE90和IE95)参考值的分布特征[L];埃及伊蚊[L];]和白纹伊蚊;(2)利用DerSimonian和Laird (DL)随机效应模型生成联合效应IE值,为未来的耐药性评估建立基准;(3)将这些综合效应IE值与先前发表的文献进行比较。系统检索于2025年2月10日前在PubMed、SciELO、J-STAGE和谷歌Scholar中进行,并遵循系统评价和荟萃分析的首选报告项目(PRISMA)指南。符合条件的研究是与世界卫生组织(WHO)昆虫生长调节剂(IGR)抗性测试方案一致的初级同行评议文献,特别是那些使用probit回归分析的连续浸泡剂量反应生物测定法报告敏感参考IE值的文献。使用漏斗图和Egger回归对符合世卫组织方案的总共72项独特研究进行了发表偏倚评估。进行敏感性和亚组分析来评估单个研究对总体联合效应的贡献。对18种不同的物种/有效成分/IE浓度亚组配对进行异质性(I2)和综合效应值的估计。异质性(I2)在18个亚组之间的范围为29.32% ~ 99.78%,表明文献中存在不一致性。DL综合效应IE50从0.048 ppb到Cx不等。接触吡丙醚至1.818 ppb的伊蚊;白纹伊蚊接触过甲基戊二烯。确定性分析表明,18对组合效应值中有1对具有高确定性,8对具有中等确定性,6对具有低确定性,3对具有极低确定性。不确定性的主要原因(排名)是研究之间的不一致,综合效应大小的不精确,以及可能的发表偏倚。结果表明:(1)所有物种/IGR配对均可建立稳健的DL联合效应IE50值,为今后的抗性评估提供必要的基准;(2)实验室易感菌落存在较大异质性,使现场采集的蚊虫耐药性检测复杂化;(3)相当一部分文献依赖于可能不完全易感的参考蚊子菌株,这进一步使耐药性检测复杂化。这项研究没有注册,并得到了北岸灭蚊区的支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing Insect Growth Regulator Resistance Using Bioassays: A Systematic Review and Meta-Analysis of Methoprene and Pyriproxyfen Inhibition of Emergence in Three Vector Mosquito Species.

This systematic review and meta-analysis aims to: (1) characterize the distribution of published inhibition of emergence (IE50, IE90, and IE95) reference values for pyriproxyfen and methoprene in Culex pipiens [L.], Aedes aegypti [L.], and Aedes albopictus [Skuse]; (2) generate combined-effect IE values using a DerSimonian and Laird (DL) random-effects model to establish benchmarks for future resistance assessments; and (3) compare these combined-effect IE values with previously published literature. A systematic search was conducted in PubMed, SciELO, J-STAGE, and Google Scholar up to 10 February 2025, following the Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines. Eligible studies were primary, peer-reviewed literature that aligned with World Health Organization (WHO) protocols for insect growth regulator (IGR) resistance testing, specifically those reporting susceptible reference IE values from continuous immersion dose-response bioassays analyzed using probit regression. A total of 72 unique studies that aligned with WHO protocols were assessed for publication bias using a funnel plot and Egger's regression. Sensitivity and subgroup analyses were conducted to evaluate individual study contributions to the overall combined effect. Heterogeneity (I2) and combined effect values were estimated for 18 different species/active ingredient/IE concentration subgroup pairings. Heterogeneity (I2) ranged from 29.32 to 99.78% between the 18 subgroups, indicating inconsistency within the literature. The DL combined effect IE50 varied from 0.048 ppb for Cx. pipiens exposed to pyriproxyfen to 1.818 ppb for Ae. albopictus exposed to methoprene. A certainty analysis indicated that 1 combined effect value exhibited high certainty, 8 out of 18 pairings were moderately certain, 6 exhibited low certainty and 3 exhibited very low certainty. The main causes of uncertainty (ranked) were inconsistency between studies, imprecision of the combined effect size, and possible publication bias. Our findings indicate that (1) robust DL combined effect IE50 values could be established for all species/IGR pairings, providing essential benchmarks for future resistance assessments; (2) substantial heterogeneity among susceptible laboratory colonies complicates resistance detection in field-collected mosquitoes; and (3) a significant portion of the literature relies on reference mosquito strains that are likely not fully susceptible, further complicating resistance detection. This study was not registered and was supported by the North Shore Mosquito Abatement District.

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来源期刊
Tropical Medicine and Infectious Disease
Tropical Medicine and Infectious Disease Medicine-Public Health, Environmental and Occupational Health
CiteScore
3.90
自引率
10.30%
发文量
353
审稿时长
11 weeks
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