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协同与时机:预测此次大规模医疗活动将与室内滞留喷洒协同增效,以加强疟疾防控。

Synergy and timing: a concurrent mass medical campaign predicted to augment indoor residual spraying for malaria.

机构信息

Micron School of Materials Science and Engineering, Boise State University, Engineering Building, Suite 338, Boise, ID, 83725, USA.

Pilgrim Africa, 115 N 85th St #202, Seattle, WA, 98103, USA.

出版信息

Malar J. 2019 May 6;18(1):160. doi: 10.1186/s12936-019-2788-9.

Abstract

BACKGROUND

Control programmes for high burden countries are tasked with charting effective multi-year strategies for malaria control within significant resource constraints. Synergies between different control tools, in which more than additive benefit accrues from interventions used together, are of interest because they may be used to obtain savings or to maximize health impact per expenditure. One commonly used intervention in sub-Saharan Africa is indoor residual spraying (IRS), typically deployed through a mass campaign. While possible synergies between IRS and long-lasting insecticide-treated nets (LLINs) have been investigated in multiple transmission settings, coordinated synergy between IRS and other mass medical distribution campaigns have not attracted much attention. Recently, a strong timing-dependent synergy between an IRS campaign and a mass drug administration (MDA) was theoretically quantified. These synergistic benefits likely differ across settings depending on transmission intensity and its overall seasonal pattern.

METHODS

High coverage interventions are modelled in different transmission environments using two methods: a Ross-Macdonald model variant and openmalaria simulations. The impact of each intervention strategy was measured through its ability to prevent host infections over time, and the effects were compared to the baseline case of deploying interventions in isolation.

RESULTS

By modelling IRS and MDA together and varying their deployment times, a strong synergy was found when the administered interventions overlapped. The added benefit of co-timed interventions was robust to differences in the models. In the Ross-Macdonald model, the impact compared was roughly double the sequential interventions in most transmission settings. Openmalaria simulations of this medical control augmentation of an IRS campaign show an even stronger response with the same timing relationship.

CONCLUSIONS

The strong synergies found for these control tools between the complementary interventions demonstrate a general feature of effective concurrent campaign-style vector and medical interventions. A mass treatment campaign is normally short-lived, especially in higher transmission settings. When co-timed, the rapid clearing of the host parasite reservoir via chemotherapy is protected from resurgence by the longer duration of the vector control. An effective synchronous treatment campaign has the potential to greatly augment the impact of indoor residual spraying. Mass screening and treatment (MSAT) with highly sensitive rapid diagnostic tests may demonstrate a comparable trend while mass LLIN campaigns may similarly coordinate with MDA/MSAT.

摘要

背景

高负担国家的控制规划任务是在资源有限的情况下制定有效的多年疟疾控制战略。不同控制工具之间的协同作用(即联合使用干预措施可带来额外的益处)引起了人们的兴趣,因为这可能有助于节省资源或使每笔支出的健康效益最大化。在撒哈拉以南非洲地区,一种常用的干预措施是室内滞留喷洒(IRS),通常通过大规模运动进行部署。虽然 IRS 和长效驱虫蚊帐(LLIN)之间的协同作用已在多种传播环境中进行了研究,但 IRS 与其他大规模医疗分发运动之间的协同作用尚未引起太多关注。最近,理论上定量分析了 IRS 运动和大规模药物治疗(MDA)之间的强烈时间依赖性协同作用。这些协同效益可能因传播强度及其整体季节性模式而异。

方法

使用两种方法在不同的传播环境中对高覆盖率干预措施进行建模:罗斯-麦克唐纳模型变体和 openmalaria 模拟。通过其随时间防止宿主感染的能力来衡量每种干预策略的影响,并将其与单独部署干预措施的基线情况进行比较。

结果

通过同时建模 IRS 和 MDA 并改变它们的部署时间,当管理的干预措施重叠时,发现了很强的协同作用。在大多数传播环境中,共同定时干预的额外益处是顺序干预的两倍左右。在 IRS 运动的这种医学控制增强的 openmalaria 模拟中,具有相同时间关系的反应甚至更强。

结论

在这些互补干预措施之间发现的这些控制工具的强大协同作用表明了有效同时进行的基于运动的向量和医学干预的一般特征。大规模治疗运动通常持续时间很短,尤其是在高传播环境中。当共同定时时,通过化疗快速清除宿主寄生虫库可以防止媒介控制的持续时间更长而再次爆发。有效的同步治疗运动有可能极大地增强室内滞留喷洒的效果。高度敏感的快速诊断检测的大规模筛查和治疗(MSAT)可能会表现出类似的趋势,而大规模 LLIN 运动也可以与 MDA/MSAT 协调。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fac0/6501353/38c99c485cea/12936_2019_2788_Fig1_HTML.jpg

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