控制疟疾的新兴公共卫生战略:创新与影响。

IF 1.7 Q2 MEDICINE, GENERAL & INTERNAL
Annals of Medicine and Surgery Pub Date : 2024-09-20 eCollection Date: 2024-11-01 DOI:10.1097/MS9.0000000000002578
Emmanuel Ifeanyi Obeagu, Getrude Uzoma Obeagu
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引用次数: 0

摘要

疟疾仍然是全球健康的重大挑战,尤其是在资源有限和热带气候的地区。尽管做出了广泛的努力,但疟疾仍然造成了严重的发病率和死亡率,据报告,2020 年将有约 2.29 亿病例和 40.9 万人死亡。然而,近年来,旨在控制和消除疟疾的公共卫生战略取得了可喜的进展。技术进步在改善疟疾控制工作方面发挥了至关重要的作用。基因组监测技术能够监测疟原虫种群,帮助检测抗药性并为有针对性的干预措施提供信息。此外,快速诊断检测(RDTs)和分子检测等创新诊断技术提高了疟疾诊断的速度和准确性,促进了及时治疗并减少了传播。这些工具有助于实现世卫组织到 2030 年将疟疾病例和死亡人数至少减少 90% 的目标。新型病媒控制方法为减少疟疾传播提供了创新方法。驱虫蚊帐(ITNs)和室内滞留喷洒(IRS)仍然是基础战略,其进展包括开发下一代杀虫剂和长效驱虫蚊帐(LLINs)。此外,基因改造蚊子(如基因驱动技术)也为减少蚊子数量和阻断疟疾传播带来了希望。这些病媒控制创新是对其他战略的补充,有助于全面控制疟疾,以实现可持续减少疾病和最终消灭疟疾的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Emerging public health strategies in malaria control: innovations and implications.

Malaria remains a significant global health challenge, particularly in regions with limited resources and tropical climates. Despite extensive efforts, the disease continues to cause significant morbidity and mortality, with ~229 million cases and 409 000 deaths reported in 2020. However, recent years have seen promising advancements in public health strategies aimed at malaria control and elimination. Technological advancements have played a crucial role in improving malaria control efforts. Genomic surveillance techniques enable the monitoring of malaria parasite populations, aiding in the detection of drug resistance and informing targeted interventions. Additionally, innovative diagnostic technologies, such as rapid diagnostic tests (RDTs) and molecular assays, have enhanced the speed and accuracy of malaria diagnosis, facilitated prompt treatment and reduced transmission. These tools are instrumental in achieving the WHO goals of reducing malaria cases and deaths by at least 90% by 2030. Novel vector control methods offer innovative approaches to reduce malaria transmission. Insecticide-treated nets (ITNs) and indoor residual spraying (IRS) remain foundational strategies, with advancements including the development of next-generation insecticides and long-lasting insecticidal nets (LLINs). Furthermore, genetic modification of mosquitoes, such as gene drive technology, holds promise for reducing mosquito populations and interrupting malaria transmission. These vector control innovations complement other strategies, contributing to comprehensive malaria control efforts aimed at achieving sustainable disease reduction and eventual elimination.

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来源期刊
Annals of Medicine and Surgery
Annals of Medicine and Surgery MEDICINE, GENERAL & INTERNAL-
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5.90%
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