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在非洲城乡地区,利用吡丙醚自动传播法进行疟疾媒介控制的现状与未来机遇。

Current and future opportunities of autodissemination of pyriproxyfen approach for malaria vector control in urban and rural Africa.

作者信息

Mmbaga Augustino Thabiti, Lwetoijera Dickson Wilson

机构信息

Environmental Health and Ecological Science Department, Ifakara Health Institute, Ifakara, Morogoro, P.O. Box 53, Tanzania.

School of Life Sciences and Bio Engineering, Nelson Mandela African Institution of Science and Technology, Tengeru, Arusha, P.O. Box 447, Tanzania.

出版信息

Wellcome Open Res. 2023 Oct 30;8:119. doi: 10.12688/wellcomeopenres.19131.2. eCollection 2023.

Abstract

Despite the progress made in reducing malaria burden, new ways to address the increasing challenges of insecticide resistance and the invasion and spread of exotic malaria vectors such as in Africa are urgently needed. While African countries are adopting larviciding as a complementary intervention for malaria vector control, the autodissemination technology has the potential to overcome barriers associated with the identification and treatment of prolific habitats that impede conventional larviciding approaches in rural settings. The autodissemination technology as a "lure and release" strategy works by exploiting the resting behavior of gravid mosquitoes to transfer lethal concentration of biological or chemical insecticide such as pyriproxyfen (PPF), an insect growth regulator (IGRs) to their oviposition sites and result in adult emergence inhibition. Despite the evidence of the autodissemination approach to control other mosquito-borne diseases, there is growing and promising evidence for its use in controlling malaria vectors in Africa, which highlights the momentous research that needs to be sustained. This article reviews the evidence for efficacy of the autodissemination approach using PPF and discusses its potential as efficient and affordable complementary malaria vector control intervention in Africa. In the previous studies that were done in controlled semi-field environments, autodissemination with PPF demonstrated its potential in reducing densities of captive population of malaria vectors such as and Of importance, empirical evidence and biology-informed mathematical models to demonstrate the utility of the autodissemination approach to control wild populations of malaria vectors under field environment either alone or in combination with other tools are underway. Among others, the key determining factors for future introduction of this approach at scale is having scalable autodissemination devices, optimized PPF formulations, assess its integration/complementarity to existing conventional larviciding, and community perception and acceptance of the autodissemination approach.

摘要

尽管在减轻疟疾负担方面取得了进展,但迫切需要新的方法来应对杀虫剂抗药性不断增加以及非洲等地外来疟疾媒介入侵和传播等日益严峻的挑战。虽然非洲国家正在采用杀幼虫剂作为疟疾媒介控制的补充干预措施,但自动传播技术有可能克服与识别和处理繁殖地相关的障碍,这些障碍阻碍了农村地区传统的杀幼虫方法。自动传播技术作为一种“诱捕并释放”策略,其工作原理是利用孕蚊的栖息行为,将致死浓度的生物或化学杀虫剂(如昆虫生长调节剂吡丙醚)转移到它们的产卵地点,从而抑制成虫羽化。尽管有证据表明自动传播方法可用于控制其他蚊媒疾病,但越来越多且令人鼓舞的证据表明该方法可用于控制非洲的疟疾媒介,这凸显了需要持续开展的重大研究。本文综述了使用吡丙醚的自动传播方法的有效性证据,并讨论了其作为非洲高效且经济实惠的补充性疟疾媒介控制干预措施的潜力。在之前在受控半野外环境中进行的研究中,用吡丙醚进行自动传播证明了其在降低诸如冈比亚按蚊和斯氏按蚊等疟疾媒介圈养种群密度方面的潜力。重要的是,目前正在开展实证研究和基于生物学的数学模型,以证明自动传播方法在野外环境中单独或与其他工具结合控制疟疾媒介野生种群的效用。其中,未来大规模引入该方法的关键决定因素包括拥有可扩展的自动传播装置、优化的吡丙醚配方、评估其与现有传统杀幼虫方法是否具有整合性/互补性,以及社区对自动传播方法的认知和接受程度。

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