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经大规模药物治疗消除间日疟的研究:一项模拟研究。

Investigation of P. vivax elimination via mass drug administration: A simulation study.

机构信息

School of Mathematics and Statistics, The University of Melbourne, Parkville, Australia.

School of Mathematics and Statistics, The University of Melbourne, Parkville, Australia; Centre for Epidemiology and Biostatistics, Melbourne School of Population and Global Health, The University of Melbourne, Parkville, Australia.

出版信息

Epidemics. 2024 Sep;48:100789. doi: 10.1016/j.epidem.2024.100789. Epub 2024 Aug 31.

Abstract

Plasmodium vivax is the most geographically widespread malaria parasite. P. vivax has the ability to remain dormant (as a hypnozoite) in the human liver and subsequently reactivate, which makes control efforts more difficult. Given the majority of P. vivax infections are due to hypnozoite reactivation, targeting the hypnozoite reservoir with a radical cure is crucial for achieving P. vivax elimination. Stochastic effects can strongly influence dynamics when disease prevalence is low or when the population size is small. Hence, it is important to account for this when modelling malaria elimination. We use a stochastic multiscale model of P. vivax transmission to study the impacts of multiple rounds of mass drug administration (MDA) with a radical cure, accounting for superinfection and hypnozoite dynamics. Our results indicate multiple rounds of MDA with a high-efficacy drug are needed to achieve a substantial probability of elimination. This work has the potential to help guide P. vivax elimination strategies by quantifying elimination probabilities for an MDA approach.

摘要

间日疟原虫是分布最广的疟原虫。间日疟原虫具有在人体肝脏中休眠(作为休眠子)并随后重新激活的能力,这使得控制工作更加困难。鉴于大多数间日疟原虫感染是由于休眠子重新激活引起的,因此用根治性药物靶向休眠子库对于实现间日疟原虫消除至关重要。当疾病流行率较低或人口规模较小时,随机效应会强烈影响动态。因此,在建模疟疾消除时,需要考虑这一点。我们使用间日疟原虫传播的随机多尺度模型来研究多次大规模药物治疗(MDA)与根治性药物治疗的影响,同时考虑了再感染和休眠子动力学。我们的研究结果表明,需要多次 MDA 治疗和高疗效药物才能实现消除的可能性。这项工作有可能通过量化 MDA 方法的消除概率来帮助指导间日疟原虫消除策略。

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