Dynamics of malaria vector composition and Plasmodium falciparum infection in mainland Tanzania: 2017–2021 data from the national malaria vector entomological surveillance

Abstract Background In 2015, Tanzania National Malaria Control Programme (NMCP) established a longitudinal malaria vector entomological surveillance (MVES). The MVES is aimed at a periodical assessment of malaria vector composition and abundance, feeding and resting behaviours, and Plasmodium falcip...

Full description

Bibliographic Details
Published in:Malaria Journal
Main Authors: Charles D. Mwalimu, Samson Kiware, Rosemary Nshama, Yahya Derua, Pendael Machafuko, Peter Gitanya, Winfred Mwafongo, Jubilate Bernard, Basiliana Emidi, Victor Mwingira, Robert Malima, Victoria Githu, Brian Masanja, Yeromin Mlacha, Patrick Tungu, Bilali Kabula, Edward Sambu, Bernard Batengana, Johnson Matowo, Nicodem Govella, Prosper Chaki, Samwel Lazaro, Naomi Serbantez, Jovin Kitau, Stephen M. Magesa, William N. Kisinza
Format: Article in Journal/Newspaper
Language:English
Published: BMC 2024
Subjects:
Online Access:https://doi.org/10.1186/s12936-024-04849-7
https://doaj.org/article/a192938735614a08b68285ea1e045e91
Description
Summary:Abstract Background In 2015, Tanzania National Malaria Control Programme (NMCP) established a longitudinal malaria vector entomological surveillance (MVES). The MVES is aimed at a periodical assessment of malaria vector composition and abundance, feeding and resting behaviours, and Plasmodium falciparum infection in different malaria epidemiological strata to guide the NMCP on the deployment of appropriate malaria vector interventions. This work details the dynamics of malaria vector composition and transmission in different malaria epidemiological strata. Methods The MVES was conducted from 32 sentinel district councils across the country. Mosquitoes were collected by the trained community members and supervised by the NMCP and research institutions. Three consecutive night catches (indoor collection with CDC light trap and indoor/outdoor collection using bucket traps) were conducted monthly in three different households selected randomly from two to three wards within each district council. Collected mosquitoes were sorted and morphologically identified in the field. Thereafter, the samples were sent to the laboratory for molecular characterization using qPCR for species identification and detection of P. falciparum infections (sporozoites). ELISA technique was deployed for blood meal analysis from samples of blood-fed mosquitoes to determine the blood meal indices (BMI). Results A total of 63,226 mosquitoes were collected in 32 district councils from January 2017 to December 2021. Out of which, 39,279 (62%), 20,983 (33%) and 2964 (5%) were morphologically identified as Anopheles gambiae sensu lato (s.l.), Anopheles funestus s.l., and as other Anopheles species, respectively. Out of 28,795 laboratory amplified mosquitoes, 13,645 (47%) were confirmed to be Anopheles arabiensis, 9904 (34%) as An. funestus sensu stricto (s.s.), and 5193 (19%) as An. gambiae s.s. The combined average entomological inoculation rates (EIR) were 0.46 (95% CI 0.028–0.928) for An. gambiae s.s., 0.836 (95% CI 0.138–1.559) for An. ...