TY - JOUR
T1 - Contribution of Functional Antimalarial Immunity to Measures of Parasite Clearance in Therapeutic Efficacy Studies of Artemisinin Derivatives
AU - O'Flaherty, Katherine
AU - Ataíde, Ricardo
AU - Zaloumis, Sophie G.
AU - Ashley, Elizabeth A.
AU - Powell, Rosanna
AU - Feng, Gaoqian
AU - Reiling, Linda
AU - Dondorp, Arjen M.
AU - Day, Nicholas P.
AU - Dhorda, Mehul
AU - Fairhurst, Rick M.
AU - Lim, Pharath
AU - Amaratunga, Chanaki
AU - Pukrittayakamee, Sasithon
AU - Hien, Tran Tinh
AU - Htut, Ye
AU - Mayxay, Mayfong
AU - Faiz, M. Abul
AU - Beeson, James G.
AU - Nosten, Francois
AU - Simpson, Julie A.
AU - White, Nicholas J.
AU - Fowkes, Freya J.I.
PY - 2019/10
Y1 - 2019/10
N2 - Background: Antibodies to the blood stages of malaria parasites enhance parasite clearance and antimalarial efficacy. The antibody subclass and functions that contribute to parasite clearance during antimalarial treatment and their relationship to malaria transmission intensity have not been characterized. Methods: Levels of immunoglobulin G (IgG) subclasses and C1q fixation in response to Plasmodium falciparum merozoite antigens (erythrocyte-binding antigen [EBA] 175RIII-V, merozoite surface protein 2 [MSP-2], and MSP-142) and opsonic phagocytosis of merozoites were measured in a multinational trial assessing the efficacy of artesunate therapy across 11 Southeast Asian sites. Regression analyses assessed the effects of antibody seropositivity on the parasite clearance half-life (PC), having a PC of ≥5 hours, and having parasitemia 3 days after treatment. Results: IgG3, followed by IgG1, was the predominant IgG subclass detected (seroprevalence range, 5%-35% for IgG1 and 27%-41% for IgG3), varied across study sites, and was lowest in study sites with the lowest transmission intensity and slowest mean PC. IgG3, C1q fixation, and opsonic-phagocytosis seropositivity were associated with a faster PC (range of the mean reduction in PC, 0.47-1.16 hours; P range,. 001-.03) and a reduced odds of having a PC of ≥5 hours and having parasitemia 3 days after treatment. Conclusions: The prevalence of IgG3, complement-fixing antibodies, and merozoite phagocytosis vary according to transmission intensity, are associated with faster parasite clearance, and may be sensitive surrogates of an augmented clearance capacity of infected erythrocytes. Determining the functional immune mechanisms associated with parasite clearance will improve characterization of artemisinin resistance.
AB - Background: Antibodies to the blood stages of malaria parasites enhance parasite clearance and antimalarial efficacy. The antibody subclass and functions that contribute to parasite clearance during antimalarial treatment and their relationship to malaria transmission intensity have not been characterized. Methods: Levels of immunoglobulin G (IgG) subclasses and C1q fixation in response to Plasmodium falciparum merozoite antigens (erythrocyte-binding antigen [EBA] 175RIII-V, merozoite surface protein 2 [MSP-2], and MSP-142) and opsonic phagocytosis of merozoites were measured in a multinational trial assessing the efficacy of artesunate therapy across 11 Southeast Asian sites. Regression analyses assessed the effects of antibody seropositivity on the parasite clearance half-life (PC), having a PC of ≥5 hours, and having parasitemia 3 days after treatment. Results: IgG3, followed by IgG1, was the predominant IgG subclass detected (seroprevalence range, 5%-35% for IgG1 and 27%-41% for IgG3), varied across study sites, and was lowest in study sites with the lowest transmission intensity and slowest mean PC. IgG3, C1q fixation, and opsonic-phagocytosis seropositivity were associated with a faster PC (range of the mean reduction in PC, 0.47-1.16 hours; P range,. 001-.03) and a reduced odds of having a PC of ≥5 hours and having parasitemia 3 days after treatment. Conclusions: The prevalence of IgG3, complement-fixing antibodies, and merozoite phagocytosis vary according to transmission intensity, are associated with faster parasite clearance, and may be sensitive surrogates of an augmented clearance capacity of infected erythrocytes. Determining the functional immune mechanisms associated with parasite clearance will improve characterization of artemisinin resistance.
KW - antibody
KW - artemisinin
KW - drug resistance
KW - immunity
KW - Malaria
UR - https://www.scopus.com/pages/publications/85072058528
U2 - 10.1093/infdis/jiz247
DO - 10.1093/infdis/jiz247
M3 - Article
C2 - 31075171
AN - SCOPUS:85072058528
SN - 0022-1899
VL - 220
SP - 1178
EP - 1187
JO - The Journal of Infectious Diseases
JF - The Journal of Infectious Diseases
IS - 7
ER -