Literature DB >> 16679042

Impact of red blood cell polymorphisms on the antibody response to Plasmodium falciparum in Senegal.

Jean Birame Sarr1, Stéphane Pelleau, Cécile Toly, Juliette Guitard, Lassana Konaté, Philippe Deloron, André Garcia, Florence Migot-Nabias.   

Abstract

The evidence of protection afforded by red blood cell polymorphisms against either clinical malaria or Plasmodium falciparum blood levels varies with the study site and the type of malaria transmission. Nevertheless, no clear implication of an antibody-related effect has yet been established in the protection related to red blood cell polymorphisms. We performed a prospective study, where plasma IgG and IgG subclasses directed to recombinant proteins from the merozoite surface protein 2 (MSP2/3D7 and MSP2/FC27) and the ring-infected erythrocyte surface antigen (RESA) were determined in a cohort of 413 Senegalese children before the annual malaria transmission season. The antibody response was dependent on age, and to a lesser extent, on the village of residence. IgG3 responders to all proteins, IgG responders to RESA and MSP2/3D7, as well as IgG2 to RESA and IgG1 responders to MSP2/3D7, presented enhanced mean values of parasite density, as evaluated during an 18-month follow-up. The levels of IgG and IgG3 to MSP2/3D7 were negatively associated with the risk of occurrence of a malaria attack during the following transmission season. Compared to normal children, sickle cell trait carriers presented lower levels of IgG to MSP2/3D7. Similarly, G6PD A- girls had lower levels of IgG and IgG3 to MSP2/FC27 than did G6PD normal girls. The impact of these particular genetic polymorphisms on the modulation of the antibody response is discussed.

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Year:  2006        PMID: 16679042     DOI: 10.1016/j.micinf.2005.12.005

Source DB:  PubMed          Journal:  Microbes Infect        ISSN: 1286-4579            Impact factor:   2.700


  11 in total

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Authors:  A Brisebarre; B Kumulungui; S Sawadogo; S Afridi; F Fumoux; P Rihet
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2.  Genome-wide association study of antibody responses to Plasmodium falciparum candidate vaccine antigens.

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3.  Immunoglobulin response to Plasmodium falciparum RESA proteins in uncomplicated and severe malaria.

Authors:  Cyril Badaut; Léa Guyonnet; Jacqueline Milet; Emmanuelle Renard; Rémy Durand; Firmine Viwami; Gratien Sagbo; Francis Layla; Philippe Deloron; Serge Bonnefoy; Florence Migot-Nabias
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4.  Sickle cell disease in Africa: a neglected cause of early childhood mortality.

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Review 5.  Biochemical and immunological mechanisms by which sickle cell trait protects against malaria.

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Review 6.  The relationship between anti-merozoite antibodies and incidence of Plasmodium falciparum malaria: A systematic review and meta-analysis.

Authors:  Freya J I Fowkes; Jack S Richards; Julie A Simpson; James G Beeson
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7.  The quantity and quality of African children's IgG responses to merozoite surface antigens reflect protection against Plasmodium falciparum malaria.

Authors:  David Courtin; Mayke Oesterholt; Harm Huismans; Kwadwo Kusi; Jacqueline Milet; Cyril Badaut; Oumar Gaye; Will Roeffen; Edmond J Remarque; Robert Sauerwein; André Garcia; Adrian J F Luty
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8.  Relationship between malaria incidence and IgG levels to Plasmodium falciparum merozoite antigens in Malian children: impact of hemoglobins S and C.

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9.  Relation between Plasmodium falciparum asymptomatic infection and malaria attacks in a cohort of Senegalese children.

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10.  Beta-globin gene haplotypes and selected Malaria-associated variants among black Southern African populations.

Authors:  G D Pule; E R Chimusa; K Mnika; K Mhandire; E Kampira; C Dandara; A Wonkam
Journal:  Glob Health Epidemiol Genom       Date:  2017-11-27
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