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评估消除淋巴丝虫病的终局策略:基于模型评估 DEC 处理盐的影响。

Assessing endgame strategies for the elimination of lymphatic filariasis: A model-based evaluation of the impact of DEC-medicated salt.

机构信息

Department of Biological Sciences, University of Notre Dame, Notre Dame, IN, 46556, USA.

出版信息

Sci Rep. 2017 Aug 7;7(1):7386. doi: 10.1038/s41598-017-07782-9.

Abstract

Concern is growing regarding the prospects of achieving the global elimination of lymphatic filariasis (LF) by 2020. Apart from operational difficulties, evidence is emerging which points to unique challenges that could confound achieving LF elimination as extinction targets draw near. Diethylcarbamazine (DEC)-medicated salt may overcome these complex challenges posed by the endgame phase of parasite elimination. We calibrated LF transmission models using Bayesian data-model assimilation techniques to baseline and follow-up infection data from 11 communities that underwent DEC salt medication. The fitted models were used to assess the utility of DEC salt treatment for achieving LF elimination, in comparison with other current and proposed drug regimens, during the endgame phase. DEC-medicated salt consistently reduced microfilaria (mf) prevalence from 1% mf to site-specific elimination thresholds more quickly than the other investigated treatments. The application of DEC salt generally required less than one year to achieve site-specific LF elimination, while annual and biannual MDA options required significantly longer durations to achieve the same task. The use of DEC-medicated salt also lowered between-site variance in extinction timelines, especially when combined with vector control. These results indicate that the implementation of DEC-medicated salt, where feasible, can overcome endgame challenges facing LF elimination programs.

摘要

人们越来越担心 2020 年能否实现全球消除淋巴丝虫病(LF)的目标。除了操作上的困难外,有证据表明,在接近寄生虫消除的终局阶段时,可能会出现独特的挑战,使 LF 消除目标变得复杂。乙胺嗪(DEC)药物盐可能会克服寄生虫消除终局阶段带来的这些复杂挑战。我们使用贝叶斯数据模型同化技术对经过 DEC 盐药物治疗的 11 个社区的基线和后续感染数据进行了 LF 传播模型校准。使用拟合模型评估了 DEC 盐治疗在终局阶段与其他当前和拟议药物方案相比,实现 LF 消除的效果。DEC 药物盐可将微丝蚴(mf)的流行率从 1%mf 迅速降低到特定地点的消除阈值,这比其他研究的治疗方法更快。DEC 盐的应用通常需要不到一年的时间即可达到特定地点的 LF 消除,而年度和双年度 MDA 方案则需要更长的时间才能完成相同的任务。DEC 药物盐的使用还降低了不同地点在灭绝时间表上的差异,尤其是与病媒控制相结合时。这些结果表明,在可行的情况下,实施 DEC 药物盐可以克服 LF 消除计划面临的终局挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3123/5547057/f17fe4fb077b/41598_2017_7782_Fig1_HTML.jpg

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