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Gametocyte carriage in uncomplicated Plasmodium falciparum malaria following treatment with artemisinin combination therapy: A systematic review and meta-analysis of individual patient data: A systematic review and meta-analysis of individual patient data

  • Salim Abdulla
  • , Jane Achan
  • , Ishag Adam
  • , Bereket H. Alemayehu
  • , Richard Allan
  • , Elizabeth N. Allen
  • , Anupkumar R. Anvikar
  • , Emmanuel Arinaitwe
  • , Elizabeth A. Ashley
  • , Puji Budi Setia Asih
  • , Ghulam Rahim Awab
  • , Karen I. Barnes
  • , Quique Bassat
  • , Elisabeth Baudin
  • , Anders Bjorkman
  • , Francois Bompart
  • , Maryline Bonnet
  • , Steffen Borrmann
  • , Teun Bousema
  • , Verena I. Carrara
  • Fabio Cenci, Francesco Checchi, Michel Cot, Prabin Dahal, Umberto D'Alessandro, Philippe Deloron, Abdoulaye Djimde, Arjen Dondorp, Grant Dorsey, Ogobara K. Doumbo, Chris J. Drakeley, Stephan Duparc, Emmanuelle Espie, Abul Faiz, Catherine O. Falade, Caterina Fanello, Jean Francois Faucher, Babacar Faye, Scott Filler, Bakary Fofana, Carole Fogg, Adama Gansane, Oumar Gaye, Blaise Genton, Peter W. Gething, Raquel Gonzalez, Francesco Grandesso, Sarah Staedke, Feiko Ter Kuile, Steve Ward
  • Ifakara Health Institute
  • Uganda Malaria Surveillance Project
  • Medical Research Council Unit The Gambia
  • University of Khartoum
  • Columbia University
  • The MENTOR Initiative
  • University of Cape Town
  • National Institute of Malaria Research India
  • Infectious Diseases Research Collaboration
  • Shoklo Malaria Research Unit
  • Mahidol University
  • Eijkman Institute for Molecular Biology
  • Ministry of Public Health
  • Infectious Diseases Data Observatory
  • Centro de investigação de Saúde de Manhiça
  • Universitat de Barcelona
  • Epicentre
  • Karolinska Institutet
  • Sanofi-Aventis
  • Université de Montpellier 1
  • Wellcome Trust Research Laboratories Nairobi
  • University of Tübingen
  • London School of Hygiene and Tropical Medicine
  • Radboud University Nijmegen
  • Sigma-Tau S.p.A.
  • Institut de recherche pour le développement
  • University of Oxford
  • Institute of Tropical Medicine Antwerp
  • Université Paris Cité
  • Université de Bamako
  • University of California at San Francisco
  • Medicines for Malaria Venture
  • Dev Care Foundation
  • University of Ibadan
  • Université de Franche-Comté
  • The Global Fund to Fight AIDS, Tuberculosis and Malaria
  • University of Portsmouth
  • Centre national de recherche et de formation sur le paludisme
  • Université Cheikh Anta Diop de Dakar
  • Swiss TPH
  • University of Lausanne
  • Kenya Medical Research Institute

Research output: Contribution to journalArticlepeer-review

107 Citations (Scopus)

Abstract

Background: Gametocytes are responsible for transmission of malaria from human to mosquito. Artemisinin combination therapy (ACT) reduces post-treatment gametocyte carriage, dependent upon host, parasite and pharmacodynamic factors. The gametocytocidal properties of antimalarial drugs are important for malaria elimination efforts. An individual patient clinical data meta-analysis was undertaken to identify the determinants of gametocyte carriage and the comparative effects of four ACTs: artemether-lumefantrine (AL), artesunate/amodiaquine (AS-AQ), artesunate/mefloquine (AS-MQ), and dihydroartemisinin-piperaquine (DP). Methods: Factors associated with gametocytaemia prior to, and following, ACT treatment were identified in multivariable logistic or Cox regression analysis with random effects. All relevant studies were identified through a systematic review of PubMed. Risk of bias was evaluated based on study design, methodology, and missing data. Results: The systematic review identified 169 published and 9 unpublished studies, 126 of which were shared with the WorldWide Antimalarial Resistance Network (WWARN) and 121 trials including 48,840 patients were included in the analysis. Prevalence of gametocytaemia by microscopy at enrolment was 12.1 % (5887/48,589), and increased with decreasing age, decreasing asexual parasite density and decreasing haemoglobin concentration, and was higher in patients without fever at presentation. After ACT treatment, gametocytaemia appeared in 1.9 % (95 % CI, 1.7-2.1) of patients. The appearance of gametocytaemia was lowest after AS-MQ and AL and significantly higher after DP (adjusted hazard ratio (AHR), 2.03; 95 % CI, 1.24-3.12; P = 0.005 compared to AL) and AS-AQ fixed dose combination (FDC) (AHR, 4.01; 95 % CI, 2.40-6.72; P < 0.001 compared to AL). Among individuals who had gametocytaemia before treatment, gametocytaemia clearance was significantly faster with AS-MQ (AHR, 1.26; 95 % CI, 1.00-1.60; P = 0.054) and slower with DP (AHR, 0.74; 95 % CI, 0.63-0.88; P = 0.001) compared to AL. Both recrudescent (adjusted odds ratio (AOR), 9.05; 95 % CI, 3.74-21.90; P < 0.001) and new (AOR, 3.03; 95 % CI, 1.66-5.54; P < 0.001) infections with asexual-stage parasites were strongly associated with development of gametocytaemia after day 7. Conclusions: AS-MQ and AL are more effective than DP and AS-AQ FDC in preventing gametocytaemia shortly after treatment, suggesting that the non-artemisinin partner drug or the timing of artemisinin dosing are important determinants of post-treatment gametocyte dynamics.
Original languageEnglish
Article number79
JournalBMC Medicine
Volume14
Issue number1
DOIs
Publication statusPublished - 24 May 2016

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Drug resistance
  • Gametocyte
  • Malaria
  • Plasmodium falciparum

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