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Using genetic tools to understand the interactions between infection and nutrition

Using genetic tools to understand the interactions between infection and nutrition

Sarah Atkinson

MBBS, BSc, MRCPCH, DTM&H, PhD, PGDipPID


Associate Professor and Honorary Consultant in Paediatrics and Paediatric Infectious Disease

Dr Sarah Atkinson is a Wellcome Trust Career Re-entry Fellow and Senior Lecturer in the Department of Paediatrics and at the KEMRI-Wellcome Trust Research Programme in Kilifi Kenya. Sarah completed her training in paediatrics and paediatric infectious disease in London, Newcastle and Oxford. Sarah first joined the Department of Paediatrics in 2007 as a Clinical Lecturer and has been based in Kenya since 2013. She is interested in using genetic epidemiology and other tools to understand the relationship between nutrition and infection in children.

Both micronutrient deficiencies and infectious diseases are common among children living in sub-Saharan Africa, but little is known about the effect that they have on each other. For example could malaria be causing iron deficiency, which affects >40% of children in Kilifi? We previously found that iron deficiency increases markedly over the malaria season in African children. The human hormone hepcidin controls iron regulation and prevents iron absorption and recycling. We found that hepcidin levels are unusually high in malaria even in asymptomatic infection suggesting that iron absorption may be impaired for prolonged periods in children who already have precarious iron intake. We are using genetic and epidemiological methods to investigate the impact of malaria on iron status. It is possible that elimination of malaria might also prevent an important cause of iron deficiency.

Nutritional status may also influence the risk of infection. The safety of iron supplementation is an important concern since pathogens require iron for their growth. I am using a Mendelian randomization (MR) to address the question of whether a child's iron status is causally related to their risk of malaria and/or bacterial infection. MR is an approach that utilizes the random allocation of genetic variants at conceptioin to investigate causality between an intermediate trait (iron status) and disease (infection). In order to identify genetic variants for MR, I am conducting the first genome-wide association study of iron status and hepcidin levels in African populations. Validated genetic variants will be taken forward to large MR case-control studies of severe malaria and bacteraemia using stored samples from the Kilifi Biobank and the MalariaGEN Consortium.

Key publications

Iron Deficiency Is Associated with Reduced Levels of Plasmodium falciparum-specific Antibodies in African Children

Journal article

Bundi CK. et al, (2021), Clinical Infectious Diseases, 73, 43 - 49

Malaria is a cause of iron deficiency in African children

Journal article

Muriuki JM. et al, (2021), Nature Medicine, 27, 653 - 658

How severe anaemia might influence the risk of invasive bacterial infections in african children

Journal article

Abuga KM. et al, (2020), International Journal of Molecular Sciences, 21, 1 - 18

Estimating the burden of iron deficiency among African children

Journal article

Muriuki JM. et al, (2020), BMC Medicine, 18

The ferroportin Q248H mutation protects from anemia, but not malaria or bacteremia

Journal article

Muriuki JM. et al, (2019), Science Advances, 5

Iron Status and Associated Malaria Risk among African Children

Journal article

Muriuki JM. et al, (2019), Clinical Infectious Diseases, 68, 1807 - 1814

Recent publications

Two mothers' perspectives on childhood anaemia in Kilifi, Kenya

Journal article

Mutua AM. and Atkinson SH., (2025), Lancet Haematology, 12, e672 - e673

Getting back on track to meet global anaemia reduction targets: a Lancet Haematology Commission

Journal article

Atkinson SH. et al, (2025), Lancet Haematology, 12, e717 - e767

Biology of Anemia: A Public Health Perspective

Journal article

Brittenham GM. et al, (2023), Journal of Nutrition, 153, S7 - S28

Universal iron supplementation: the best strategy to tackle childhood anaemia in malaria-endemic countries?

Journal article

Karthikappallil R. and Atkinson SH., (2023), Wellcome Open Research, 8

Severe anaemia, iron deficiency, and susceptibility to invasive bacterial infections

Journal article

Abuga KM. et al, (2023), Wellcome Open Research, 8

Availability of Ferritin-Bound Iron to Enterobacteriaceae

Journal article

Gehrer CM. et al, (2022), International Journal of Molecular Sciences, 23

Hepcidin regulation in Kenyan children with severe malaria and non-typhoidal Salmonella bacteremia

Journal article

Abuga KM. et al, (2022), Haematologica, 107, 1589 - 1598

Vitamin D deficiency in young African children

Journal article

Mogire RM. et al, (2022), Lancet Public Health

Challenges in estimating the prevalence of vitamin D deficiency in Africa – Authors' reply

Journal article

Mogire RM. and Atkinson SH., (2022), The Lancet Global Health, 10

Vitamin D Deficiency and Its Association with Iron Deficiency in African Children

Journal article

Mogire RM. et al, (2022), Nutrients, 14

Prevalence and predictors of vitamin D deficiency in young African children

Journal article

Mogire RM. et al, (2021), BMC Medicine, 19

Iron Deficiency Is Associated with Reduced Levels of Plasmodium falciparum-specific Antibodies in African Children

Journal article

Bundi CK. et al, (2021), Clinical Infectious Diseases, 73, 43 - 49

Malaria is a cause of iron deficiency in African children

Journal article

Muriuki JM. et al, (2021), Nature Medicine, 27, 653 - 658