4.6 Review

Vector control in China, from malaria endemic to elimination and challenges ahead

期刊

INFECTIOUS DISEASES OF POVERTY
卷 11, 期 1, 页码 -

出版社

BMC
DOI: 10.1186/s40249-022-00971-3

关键词

Malaria; Endemic; Vector control; Anopheles; Mosquito; Elimination; China

资金

  1. National Natural Science Foundation of China [81802039]

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Background vector control is crucial in preventing and controlling malaria. This review systematically summarizes the evolution, adjustment, and optimization of vector control strategies towards elimination in China, and discusses the challenges ahead. The tailored and adapted vector control strategies have played a critical role in China's malaria prevention, control, and elimination, and could provide practical reference for other countries in the global effort to eliminate malaria.
Background Vector control is an important approach to preventing and controlling malaria. From the malaria epidemic to malaria elimination in China, vector control has played an essential and irreplaceable role in the historical process. This review systematically summarizes the evolution, adjustment, and optimization of vector control strategy towards elimination and discusses the challenges ahead. Main text This review first summarizes the evolution of vector control strategies during different stages of malaria epidemic, control, elimination, and post-elimination in China. We then distill the vector control experience and lessons in different stages. We discuss the current and future challenges and propose future research directions and developments for novel malaria vector control strategies. Results Vector control has played an invaluable role in achieving malaria elimination. China adopted different prevention and control measures in response to the different malaria-endemic situations and vector distributions. Firstly, baseline surveys were initiated to establish the entomological data and helped clarify the prevention priorities and targets. Secondly, targeted and adjusted vector control strategies were conducted in various regions according to the local epidemic characteristics and different vector species. Thirdly, scientific research facilitated efficient vector-control strategies. In addition, the overall economic and social development have promoted environmental improvement, personal protection, and health care. Prediction of the vector distribution was integrated into risk assessment strategies, allowing for sustaining achievements in risk areas. Conclusions The tailored and adapted vector control strategies have played a critical role in China's malaria prevention, control, and elimination. Achievements and lessons learned on vector control from this progress would provide a practical reference in coping with the challenges and potential barriers other countries face in the global effort to eliminate malaria.

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