Iron supplementation during malaria infection in pregnancy and childhood: A review

Neha Surela , Amrendra Chaudhary , Poonam Kataria , Jyoti Das

Asian Pacific Journal of Tropical Medicine ›› 2024, Vol. 17 ›› Issue (1) : 12 -20.

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Asian Pacific Journal of Tropical Medicine ›› 2024, Vol. 17 ›› Issue (1) :12 -20. DOI: 10.4103/apjtm.apjtm_435_23
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Iron supplementation during malaria infection in pregnancy and childhood: A review
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Abstract

Malaria presents a significant global public health challenge, with severe malarial anaemia being a primary manifestation of the disease. The understanding of anaemia caused by malaria remains incomplete, making the treatment more complex. Iron is a crucial micronutrient essential for haemoglobin synthesis, oxygen delivery, and other vital metabolic functions in the body. It is indispensable for the growth of human beings, as well as bacteria, protozoa, and viruses in vitro and in vivo. Iron deficiency is among the most common nutritional deficiencies and can have detrimental effects during developmental stages of life. Malaria-induced iron deficiency occurs due to the hemolysis of erythrocytes and the suppression of erythropoiesis, leading to anaemia. Meeting iron requirements is particularly critical during pivotal life stages such as pregnancy, infancy, and childhood. Dietary intake alone may not suffice to meet adequate iron requirements, thus highlighting the vital role of iron supplementation. While iron supplementation can alleviate iron deficiency, it can exacerbate malaria infection by providing additional iron for the parasites. However, in the context of pregnancy and childhood, iron supplementation combined with malaria prevention and treatment has been shown to be beneficial in improving birth outcomes and ensuring proper growth and development, respectively. This review aims to identify the role and impact of iron supplementation in malaria infection during the life stages of pregnancy and childhood.

Keywords

Iron supplementation / Malaria / Pregnancy / Childhood

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Neha Surela, Amrendra Chaudhary, Poonam Kataria, Jyoti Das. Iron supplementation during malaria infection in pregnancy and childhood: A review. Asian Pacific Journal of Tropical Medicine, 2024, 17 (1) : 12-20 DOI:10.4103/apjtm.apjtm_435_23

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References

[1]

Vir SC. Public health and nutrition in developing countries (part I and E). New York: WPI Publishing; 2015.

[2]

Spottiswoode N, Fried M, Drakesmith H, Duffy PE. Implications of malaria on iron deficiency control strategies. Adv Nutrit 2012; 3(4): 570-578.

[3]

World Health Organization. Anaemia. 2024. [Online]. Available from: https://www.who.int/health-topics/anaemia#tab=tab_1. [Accessed on 24 May 2023].

[4]

World Health Organization. World malaria report 2022. [Online]. Available from: https://www.who.int/teams/global-malaria-programme/reports/world-malaria-report-2022. [Accessed on 24 May 2023].

[5]

Pathak VA, Ghosh K. Erythropoiesis in malaria infections and factors modifying the erythropoietic response. Anemia 2016; 2016: 9310905. doi: 10.1155/2016/9310905.

[6]

Chauhan R, Awasthi V, Thakur RS, Pande V, Chattopadhyay D, Das J. CD4+ ICOS+ Foxp3+: A sub-population of regulatory T cells contribute to malaria pathogenesis. Malar J 2022; 21(1): 32.

[7]

Awandare GA, Kempaiah P, Ochiel DO, Piazza P, Keller CC, Perkins DJ. Mechanisms of erythropoiesis inhibition by malarial pigment and malaria-induced proinflammatory mediators in an in vitro model. Am J Hematol 2011; 86(2): 155-162.

[8]

Coronado LM, Nadovich CT, Spadafora C. Malarial hemozoin: From target to tool. Biochimica et Biophysica Acta (BBA)-General Subjects 2014; 1840(6): 2032-2041.

[9]

Haldar K, Mohandas N. Malaria, erythrocytic infection, and anemia. ASH Education Program Book 2009; 2009(1): 87-93.

[10]

Zakama AK, Gaw SL. Malaria in pregnancy: What the obstetric provider in non-endemic areas needs to know. Obstet Gynecol Survey 2019; 74(9): 546.

[11]

Friedman JF, Kurtis JD, Kabyemela ER, Fried M, Duffy PE. The iron trap: Iron, malaria and anemia at the mother-child interface. Microb Infect 2009; 11(4): 460-466.

[12]

Titaley CR, Dibley MJ, Roberts CL, Agho K. Combined iron/folic acid supplements and malaria prophylaxis reduce neonatal mortality in 19 sub-Saharan African countries. Am J Clin Nutrit 2010; 92(1): 235-243.

[13]

Eisele TP, Larsen DA, Anglewicz PA, Keating J, Yukich J, Bennett A, et al. Malaria prevention in pregnancy, birthweight, and neonatal mortality: A meta-analysis of 32 national cross-sectional datasets in Africa. Lancet Infect Dis 2012; 12(12): 942-949.

[14]

Sangare L, van Eijk AM, Ter Kuile FO, Walson J, Stergachis A. The association between malaria and iron status or supplementation in pregnancy: A systematic review and meta-analysis. PLoS One 2014; 9(2): e87743.

[15]

Tang M, Krebs NF, editors . Update of pre-and postnatal iron supplementation in malaria endemic settings. In: Seminars in Perinatology. Mumbai: Elsevier; 2019.

[16]

Suchdev PS, Trehan I. Optimizing iron supplementation for children with severe malaria. Am J Clin Nutrit 2020; 111(5): 939-940.

[17]

Iqbal S, Ekmekcioglu C. Maternal and neonatal outcomes related to iron supplementation or iron status: A summary of meta-analyses. J Maternal-Fetal Neonatal Med 2019; 32(9): 1528-1540.

[18]

Hansen R, Sejer EP, Holm C, Schroll JB. Iron supplements in pregnant women with normal iron status: A systematic review and meta-analysis. Acta Obstetricia et Gynecologica Scandinavica 2023; 102(9): 1147-1158.

[19]

Brittenham GM. Safety of iron fortification and supplementation in malaria-endemic areas. Nestle Nutr Inst Workshop Ser 2012; 70: 117-127.

[20]

Kabyemela ER, Fried M, Kurtis JD, Mutabingwa TK, Duffy PE. Decreased susceptibility to Plasmodium falciparum infection in pregnant women with iron deficiency. J Infect Dis 2008; 198(2): 163-166.

[21]

Gwamaka M, Kurtis JD, Sorensen BE, Holte S, Morrison R, Mutabingwa TK, et al. Iron deficiency protects against severe Plasmodium falciparum malaria and death in young children. Clin Infect Dis 2012; 54(8): 1137-1144.

[22]

Adam I. Anemia, iron supplementation and susceptibility to Plasmodium falciparum malaria. EBioMedicine 2016; 14: 13-14.

[23]

Wideman SK, Frost JN, Richter FC, Naylor C, Lopes JM, Viveiros N, et al. Cellular iron governs the host response to malaria. PLoS Pathog 2023; 19(10): e1011679.

[24]

Muriuki JM. Investigating the causal relationship between iron status and malaria in African children; 2020. PhD thesis of The Open University. doi: https://doi.org/10.21954/ou.ro.0001170f.

[25]

Senga EL, Harper G, Koshy G, Kazembe PN, Brabin BJ. Reduced risk for placental malaria in iron deficient women. Malar J 2011; 10(1): 1-5.

[26]

Ouedraogo S, Bodeau-Livinec F, Briand V, Huynh BT, Koura GK, Accrombessi MM, et al. Malaria and gravidity interact to modify maternal haemoglobin concentrations during pregnancy. Malar J 2012; 11(1): 1-8.

[27]

Moya-Alvarez V, Cottrell G, Ouedraogo S, Accrombessi M, Massougbodgi A, Cot M. Does iron increase the risk of malaria in pregnancy? Open Forum Infect Dis 2015; 2(2): ofv038. doi: 10.1093/ofid/ofv038.

[28]

Mwangi MN, Roth JM, Smit MR, Trijsburg L, Mwangi AM, Demir AY, et al. Effect of daily antenatal iron supplementation on Plasmodium infection in Kenyan women: A randomized clinical trial. JAMA 2015; 314(10): 1009-1020.

[29]

Goheen MM, Bah A, Wegmuller R, Verhoef H, Darboe B, Danso E, et al. Host iron status and erythropoietic response to iron supplementation determines susceptibility to the RBC stage of Falciparum malaria during pregnancy. Sci Rep 2017; 7(1): 1-12.

[30]

Fowkes FJ, Moore KA, Opi DH, Simpson JA, Langham F, Stanisic DI, et al. Iron deficiency during pregnancy is associated with a reduced risk of adverse birth outcomes in a malaria-endemic area in a longitudinal cohort study. BMC Med 2018; 16(1): 1-10.

[31]

Diallo S, Roberts SA, Gies S, Rouamba T, Swinkels DW, Geurts-Moespot AJ, et al. Malaria early in the first pregnancy: Potential impact of iron status. Clin Nutrit 2020; 39(1): 204-214.

[32]

Unger HW, Laurita Longo V, Bleicher A, Ome-Kaius M, Karl S, Simpson JA, et al. The relationship between markers of antenatal iron stores and birth outcomes differs by malaria prevention regimen-a prospective cohort study. BMC Med 2021; 19(1): 1-13.

[33]

Andronescu LR, Sharma A, Peterson I, Kachingwe M, Kachepa W, Liang Y, et al. The effect of intermittent preventive treatment of malaria during pregnancy and placental malaria on infant risk of malaria. J Infect Dis 2022; 225(2): 248-256.

[34]

Unger HW, Bleicher A, Ome-Kaius M, Aitken EH, Rogerson SJ. Associations of maternal iron deficiency with malaria infection in a cohort of pregnant Papua New Guinean women. Malar J 2022; 21(1): 1-11.

[35]

Pasricha SR, Mwangi MN, Moya E, Ataide R, Mzembe G, Harding R, et al. Ferric carboxymaltose versus standard-of-care oral iron to treat second-trimester anaemia in Malawian pregnant women: A randomised controlled trial. Lancet 2023; 401(10388): 1595-1609.

[36]

Castberg FC, Sarbah EW, Koram KA, Opoku N, Ofori MF, Styrishave B, et al. Malaria causes long-term effects on markers of iron status in children: A critical assessment of existing clinical and epidemiological tools. Malar J 2018; 17(1): 1-12.

[37]

Gara SN, Madaki AJ, Thacher TD. A comparison of iron and folate with folate alone in hematologic recovery of children treated for acute malaria. Ame J Trop Med Hygiene 2010; 83(4): 843.

[38]

Sazawal S, Black RE, Ramsan M, Chwaya HM, Stoltzfus RJ, Dutta A, et al. Effects of routine prophylactic supplementation with iron and folic acid on admission to hospital and mortality in preschool children in a high malaria transmission setting: Community-based, randomised, placebo-controlled trial. Lancet 2006; 367(9505): 133-143.

[39]

Veenemans J, Milligan P, Prentice AM, Schouten LR, Inja N, van der Heijden AC, et al. Effect of supplementation with zinc and other micronutrients on malaria in Tanzanian children: A randomised trial. PLoS Med 2011; 8(11): e1001125.

[40]

Cusick SE, Opoka RO, Ssemata AS, Georgieff MK, John CC. Delayed iron improves iron status without altering malaria risk in severe malarial anemia. Am J Clin Nutrit 2020; 111(5): 1059-1067.

[41]

Harding KB, Neufeld LM. Iron deficiency and anemia control for infants and young children in malaria-endemic areas: A call to action and consensus among the research community. Adv Nutrit 2012; 3(4): 551-554.

[42]

Ojukwu JU, Okebe JU, Yahav D, Paul M. Oral iron supplementation for preventing or treating anaemia among children in malaria-endemic areas. Cochrane Database Syst Rev 2009; 8(3): 345. doi: 10.1002/14651858.CD006589.pub2.

[43]

Brabin L, Roberts SA, Tinto H, Gies S, Diallo S, Brabin B. Iron status of Burkinabé adolescent girls predicts malaria risk in the following rainy season. Nutrients 2020; 12(5): 1446.

[44]

Mebrahtu T, Stoltzfus RJ, Chwaya HM, Jape JK, Savioli L, Montresor A, et al. Low-dose daily iron supplementation for 12 months does not increase the prevalence of malarial infection or density of parasites in young Zanzibari children. J Nutrit 2004; 134(11): 3037-3041.

[45]

Jonker FA, Calis JC, van Hensbroek MB, Phiri K, Geskus RB, Brabin BJ, et al. Iron status predicts malaria risk in Malawian preschool children. PLoS One 2012; 7(8): e42670. doi: 10.1371/journal.pone.0042670.

[46]

Zlotkin S, Newton S, Aimone AM, Azindow I, Amenga-Etego S, Tchum K, et al. Effect of iron fortification on malaria incidence in infants and young children in Ghana: A randomized trial. JAMA 2013; 310(9): 938-947.

[47]

Cusick SE, Opoka RO, Ssemata AS, Georgieff MK, John CC. Comparison of iron status 28 d after provision of antimalarial treatment with iron therapy compared with antimalarial treatment alone in Ugandan children with severe malaria. Am J Clin Nutrit 2016; 103(3): 919-925.

[48]

Bahizire E, Bahwere P, Donnen P, Tugirimana PL, Balol'Ebwami S, Dramaix M, et al. High prevalence of anemia but low level of iron deficiency in preschool children during a low transmission period of malaria in rural Kivu, Democratic Republic of the Congo. Am J Trop Med Hygiene 2017; 97(2): 489.

[49]

Barffour MA, Schulze KJ, Coles CL, Chileshe J, Kalungwana Na, Arguello M, et al. High iron stores in the low malaria season increase malaria risk in the high transmission season in a prospective cohort of rural Zambian children. J Nutrit 2017; 147(8): 1531-1536.

[50]

Glinz D, Wegmüller R, Ouattara M, Diakité VG, Aaron GJ, Hofer L, et al. Iron fortified complementary foods containing a mixture of sodium iron EDTA with either ferrous fumarate or ferric pyrophosphate reduce iron deficiency anemia in 12-to 36-month-old children in a malaria endemic setting: A secondary analysis of a cluster-randomized controlled trial. Nutrients 2017; 9(7): 759.

[51]

Jaramillo EG, Mupere E, Opoka RO, Hodges JS, Lund TC, Georgieff MK, et al. Delaying the start of iron until 28 days after antimalarial treatment is associated with lower incidence of subsequent illness in children with malaria and iron deficiency. PLoS One 2017; 12(8): e0183977.

[52]

Muriuki JM, Atkinson SH. How eliminating malaria may also prevent iron deficiency in African children. Pharmaceuticals 2018; 11(4): 96.

[53]

Gies S, Roberts SA, Diallo S, Lompo OM, Tinto H, Brabin BJ. Risk of malaria in young children after periconceptional iron supplementation. Matern Child Nutrit 2021; 17(2): e13106.

[54]

Tchum SK, Sakyi SA, Arthur F, Adu B, Abubakar LA, Oppong FB, et al. Effect of iron fortification on anaemia and risk of malaria among Ghanaian pre-school children with haemoglobinopathies and different ABO blood groups. BMC Nutrit 2023; 9(1): 56.

[55]

World Health Organization. Daily iron supplementation in children and adolescents 5-12 years of age in malaria-endemic areas; 2023. [Online]. Available from: https://www.who.int/tools/elena/interventions/iron-children-5to12. [Accessed on 24 May 2023].

[56]

Obeagu EI, Obeagu GU, Egba SI, Emeka-Obi OR. Combatting anemia in pediatric malaria: Effective management strategies. Int J Curr Res Med Sci 2023; 9(11): 1-7.

[57]

Karthikappallil R, Atkinson SH. Universal iron supplementation: The best strategy to tackle childhood anaemia in malaria-endemic countries? Wellcome Open Res 2023; 8: 345.

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