At the population level, malaria remains an intractable problem in Malawi, a small but ecologically diverse country in southeastern Africa. The reasons for malaria's intransigence are enigmatic, but new findings emerging from our current ICEMR investigations have provided some clues: ? Plasmodium parasite infection prevalence is greater in school-age children than in under-five year olds ? School-age children are also most likely to carry gametocytes, the stage infectious to Anopheles vectors ? Molecular (q-PCR) diagnostic tests revealed low-level infection in people who were asymptomatic, hence not being treated (hidden reservoirs), hence a likely source of undetected transmission ? Anopheles vector abundance varied across a 20-km radius around a major urban center, with hot spots being linked to micro-environmental heterogeneity, and not to a simple urban-rural designation ? Prevention failures may result from insecticide resistance and patterns of insecticide treated net use. At the individual level, only a small proportion of people infected with Plasmodium parasites ever experience symptoms of malaria illness; most co-exist asymptomatically with the parasite. An even smaller proportion evolves into severe and complicated malaria, but the mortality rates are high. The mechanisms underlying progression along the infection-to-disease spectrum are not known, in part because reliably identifying individuals at the infection extremes (persistently asymptomatic and life-threatening cerebral malaria) has only recently become feasible. The Malawi ICEMR team has the capacity to sustain long-term observations of human cohorts in different transmission settings and to collect extensive ecological, entomological and parasitological data to evaluate: ? patterns of pathogen transmission and human host responses, ? effectiveness of multiple interventions against transmission and infection in different environments, ? relationships between infection frequency/duration and disease severity, ? impacts of insecticide resistance and insecticide treated net (ITN) quality and use on disease patterns, ? contributions of parasite growth rate, clonality, pro- and anti-inflammatory host responses ? importance of ?holes? in the immune response to variant surface antigens to disease progression. Over the course of seven years of research, which will span Malawi's next large national ITN distribution program, the Malawi ICEMR will identify why malaria control efforts in Malawi have been ineffective thus far, and will provide data-driven suggestions regarding approaches that are more likely to be effective. Studies will be undertaken in three ecologically and epidemiologically different districts that span a range of transmission intensities. Analyses of changing transmission and disease will compare patterns before, during and after the nation-wide ITN distribution program.

Public Health Relevance

THE INTRANSIGENCE OF MALARIA IN MALAWI: UNDERSTANDING HIDDEN RESERVOIRS, SUCCESSFUL VECTORS AND PREVENTION FAILURES Malaria infection and malaria disease both remain intractable problems in Malawi. This research will identify why malaria control efforts in Malawi have been ineffective by evaluating interactions involving the malaria parasite, the human host, and the insect vector ? all in the communities which bear the brunt of the malaria burden.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19AI089683-10
Application #
9672345
Study Section
Special Emphasis Panel (ZAI1)
Program Officer
Rao, Malla R
Project Start
2010-07-01
Project End
2024-03-31
Budget Start
2019-04-01
Budget End
2020-03-31
Support Year
10
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Michigan State University
Department
Internal Medicine/Medicine
Type
Schools of Osteopathic Medicine
DUNS #
193247145
City
East Lansing
State
MI
Country
United States
Zip Code
48824
Dear, Nicole F; Kadangwe, Chifundo; Mzilahowa, Themba et al. (2018) Household-level and surrounding peri-domestic environmental characteristics associated with malaria vectors Anopheles arabiensis and Anopheles funestus along an urban-rural continuum in Blantyre, Malawi. Malar J 17:229
Coalson, Jenna E; Cohee, Lauren M; Buchwald, Andrea G et al. (2018) Simulation models predict that school-age children are responsible for most human-to-mosquito Plasmodium falciparum transmission in southern Malawi. Malar J 17:147
Ducati, Rodrigo G; Namanja-Magliano, Hilda A; Harijan, Rajesh K et al. (2018) Genetic resistance to purine nucleoside phosphorylase inhibition in Plasmodium falciparum. Proc Natl Acad Sci U S A 115:2114-2119
Mohanty, Sanjib; Benjamin, Laura A; Majhi, Megharay et al. (2017) Magnetic Resonance Imaging of Cerebral Malaria Patients Reveals Distinct Pathogenetic Processes in Different Parts of the Brain. mSphere 2:
Buchwald, Andrea G; Coalson, Jenna E; Cohee, Lauren M et al. (2017) Insecticide-treated net effectiveness at preventing Plasmodium falciparum infection varies by age and season. Malar J 16:32
Gupta-Wright, Ankur; Tembo, Dumizulu; Jambo, Kondwani C et al. (2017) Functional Analysis of Phagocyte Activity in Whole Blood from HIV/Tuberculosis-Infected Individuals Using a Novel Flow Cytometry-Based Assay. Front Immunol 8:1222
Coalson, Jenna E; Walldorf, Jenny A; Cohee, Lauren M et al. (2016) High prevalence of Plasmodium falciparum gametocyte infections in school-age children using molecular detection: patterns and predictors of risk from a cross-sectional study in southern Malawi. Malar J 15:527
Feintuch, Catherine Manix; Saidi, Alex; Seydel, Karl et al. (2016) Activated Neutrophils Are Associated with Pediatric Cerebral Malaria Vasculopathy in Malawian Children. MBio 7:e01300-15
Buchwald, Andrea G; Walldorf, Jenny A; Cohee, Lauren M et al. (2016) Bed net use among school-aged children after a universal bed net campaign in Malawi. Malar J 15:127
Mathanga, Don P; Tembo, Atupele Kapito; Mzilahowa, Themba et al. (2016) Patterns and determinants of malaria risk in urban and peri-urban areas of Blantyre, Malawi. Malar J 15:590

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