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1.
Immunity ; 57(6): 1215-1224.e6, 2024 Jun 11.
Artículo en Inglés | MEDLINE | ID: mdl-38788711

RESUMEN

Malaria is a life-threatening disease of global health importance, particularly in sub-Saharan Africa. The growth inhibition assay (GIA) is routinely used to evaluate, prioritize, and quantify the efficacy of malaria blood-stage vaccine candidates but does not reliably predict either naturally acquired or vaccine-induced protection. Controlled human malaria challenge studies in semi-immune volunteers provide an unparalleled opportunity to robustly identify mechanistic correlates of protection. We leveraged this platform to undertake a head-to-head comparison of seven functional antibody assays that are relevant to immunity against the erythrocytic merozoite stage of Plasmodium falciparum. Fc-mediated effector functions were strongly associated with protection from clinical symptoms of malaria and exponential parasite multiplication, while the gold standard GIA was not. The breadth of Fc-mediated effector function discriminated clinical immunity following the challenge. These findings present a shift in the understanding of the mechanisms that underpin immunity to malaria and have important implications for vaccine development.


Asunto(s)
Anticuerpos Antiprotozoarios , Vacunas contra la Malaria , Malaria Falciparum , Plasmodium falciparum , Humanos , Plasmodium falciparum/inmunología , Malaria Falciparum/inmunología , Malaria Falciparum/parasitología , Anticuerpos Antiprotozoarios/inmunología , Vacunas contra la Malaria/inmunología , Adulto , Fragmentos Fc de Inmunoglobulinas/inmunología , Merozoítos/inmunología , Eritrocitos/parasitología , Eritrocitos/inmunología , Femenino , Masculino , Adulto Joven
2.
Immunity ; 42(3): 580-90, 2015 Mar 17.
Artículo en Inglés | MEDLINE | ID: mdl-25786180

RESUMEN

Antibodies play major roles in immunity to malaria; however, a limited understanding of mechanisms mediating protection is a major barrier to vaccine development. We have demonstrated that acquired human anti-malarial antibodies promote complement deposition on the merozoite to mediate inhibition of erythrocyte invasion through C1q fixation and activation of the classical complement pathway. Antibody-mediated complement-dependent (Ab-C') inhibition was the predominant invasion-inhibitory activity of human antibodies; most antibodies were non-inhibitory without complement. Inhibitory activity was mediated predominately via C1q fixation, and merozoite surface proteins 1 and 2 were identified as major targets. Complement fixation by antibodies was very strongly associated with protection from both clinical malaria and high-density parasitemia in a prospective longitudinal study of children. Ab-C' inhibitory activity could be induced by human immunization with a candidate merozoite surface-protein vaccine. Our findings demonstrate that human anti-malarial antibodies have evolved to function by fixing complement for potent invasion-inhibitory activity and protective immunity.


Asunto(s)
Anticuerpos Antiprotozoarios/biosíntesis , Complemento C1q/metabolismo , Vacunas contra la Malaria/inmunología , Malaria Falciparum/prevención & control , Merozoítos/inmunología , Parasitemia/prevención & control , Plasmodium falciparum/inmunología , Adolescente , Animales , Antígenos de Protozoos/genética , Antígenos de Protozoos/inmunología , Niño , Preescolar , Pruebas de Fijación del Complemento , Vía Clásica del Complemento , Eritrocitos/inmunología , Eritrocitos/parasitología , Femenino , Expresión Génica , Interacciones Huésped-Patógeno , Humanos , Inmunoglobulina G/biosíntesis , Vacunas contra la Malaria/administración & dosificación , Malaria Falciparum/inmunología , Malaria Falciparum/parasitología , Masculino , Proteína 1 de Superficie de Merozoito/antagonistas & inhibidores , Proteína 1 de Superficie de Merozoito/genética , Proteína 1 de Superficie de Merozoito/inmunología , Parasitemia/inmunología , Parasitemia/parasitología , Estudios Prospectivos , Proteínas Protozoarias/antagonistas & inhibidores , Proteínas Protozoarias/genética , Proteínas Protozoarias/inmunología
3.
Trends Immunol ; 41(12): 1051-1053, 2020 12.
Artículo en Inglés | MEDLINE | ID: mdl-33160840

RESUMEN

An exemplar outcome of an immunology-based intervention is vaccine development; the current COVID-19 pandemic is a case in point. Can we build an immunology research ecosystem in Africa that nurtures discovery and enables translation? We see African immunologists as key agents of change and discuss obstacles and opportunities.


Asunto(s)
Alergia e Inmunología , Países en Desarrollo , África , Alergia e Inmunología/educación , Alergia e Inmunología/organización & administración , Alergia e Inmunología/tendencias , Vacunas contra la COVID-19 , Humanos , SARS-CoV-2
4.
BMC Med ; 17(1): 22, 2019 01 30.
Artículo en Inglés | MEDLINE | ID: mdl-30696449

RESUMEN

BACKGROUND: Antibodies against merozoite antigens are key components of malaria immunity. The naturally acquired antibody response to these antigens is generally considered short-lived; however, the underlying mechanisms remain unclear. Prospective studies of travellers with different levels of prior exposure, returning to malaria-free countries with Plasmodium infection, offer a unique opportunity to investigate the kinetics and composition of the antibody response after natural infection. METHODS: Adults diagnosed with P. falciparum malaria in Stockholm, Sweden (20 likely malaria naïve and 41 with repeated previous exposure during residency in sub-Saharan Africa) were sampled at diagnosis and 10 days and 1, 3, 6, and 12 months after treatment. Total and subclass-specific IgG responses to P. falciparum merozoite antigens (AMA-1, MSP-119, MSP-2, MSP-3, and RH5) and tetanus toxoid were measured by multiplex bead-based immunoassays and ELISA. Mathematical modelling was used to estimate the exposure-dependent longevity of antibodies and antibody-secreting cells (ASCs). RESULTS: A majority of individuals mounted detectable antibody responses towards P. falciparum merozoite antigens at diagnosis; however, the magnitude and breadth were greater in individuals with prior exposure. In both exposure groups, antibody levels increased rapidly for 2 weeks and decayed thereafter. Previously exposed individuals maintained two- to ninefold greater antibody levels throughout the 1-year follow-up. The half-lives of malaria-specific long-lived ASCs, responsible for maintaining circulating antibodies, ranged from 1.8 to 3.7 years for merozoite antigens and were considerably short compared to tetanus-specific ASCs. Primary infected individuals did acquire a long-lived component of the antibody response; however, the total proportion of long-lived ASCs generated in response to infection was estimated not to exceed 10%. In contrast, previously exposed individuals maintained substantially larger numbers of long-lived ASCs (10-56% of total ASCs). CONCLUSION: The short-lived nature of the naturally acquired antibody response, to all tested merozoite antigens, following primary malaria infection can be attributed to a combination of a poor acquisition and short half-life of long-lived ASCs. Greater longevity is acquired with repeated infections and can be explained by the maintenance of larger numbers of long-lived ASCs. These insights advance our understanding of naturally acquired malaria immunity and will guide strategies for further development of both vaccines and serological tools to monitor exposure.


Asunto(s)
Anticuerpos Antiprotozoarios/inmunología , Antígenos de Protozoos/inmunología , Memoria Inmunológica/inmunología , Malaria Falciparum/inmunología , Inmunidad Adaptativa/inmunología , Adulto , Animales , Femenino , Humanos , Merozoítos/inmunología , Plasmodium falciparum/inmunología , Estudios Prospectivos , Suecia
5.
Immunology ; 152(2): 195-206, 2017 10.
Artículo en Inglés | MEDLINE | ID: mdl-28646586

RESUMEN

Although epidemiological observations, IgG passive transfer studies and experimental infections in humans all support the feasibility of developing highly effective malaria vaccines, the precise antigens that induce protective immunity remain uncertain. Here, we review the methodologies applied to vaccine candidate discovery for Plasmodium falciparum malaria from the pre- to post-genomic era. Probing of genomic and cDNA libraries with antibodies of defined specificities or functional activity predominated the former, whereas reverse vaccinology encompassing high throughput in silico analyses of genomic, transcriptomic or proteomic parasite data sets is the mainstay of the latter. Antibody-guided vaccine design spanned both eras but currently benefits from technological advances facilitating high-throughput screening and downstream applications. We make the case that although we have exponentially increased our ability to identify numerous potential vaccine candidates in a relatively short space of time, a significant bottleneck remains in their validation and prioritization for evaluation in clinical trials. Longitudinal cohort studies provide supportive evidence but results are often conflicting between studies. Demonstration of antigen-specific antibody function is valuable but the relative importance of one mechanism over another with regards to protection remains undetermined. Animal models offer useful insights but may not accurately reflect human disease. Challenge studies in humans are preferable but prohibitively expensive. In the absence of reliable correlates of protection, suitable animal models or a better understanding of the mechanisms underlying protective immunity in humans, vaccine candidate discovery per se may not be sufficient to provide the paradigm shift necessary to develop the next generation of highly effective subunit malaria vaccines.


Asunto(s)
Antígenos de Protozoos/inmunología , Descubrimiento de Drogas/métodos , Vacunas contra la Malaria/uso terapéutico , Malaria Falciparum/prevención & control , Plasmodium falciparum/inmunología , Animales , Anticuerpos Antiprotozoarios/inmunología , Antígenos de Protozoos/genética , Biblioteca de Genes , Ensayos Analíticos de Alto Rendimiento , Interacciones Huésped-Patógeno , Humanos , Vacunas contra la Malaria/genética , Vacunas contra la Malaria/inmunología , Malaria Falciparum/inmunología , Malaria Falciparum/parasitología , Plasmodium falciparum/genética , Proteómica
6.
Infect Immun ; 84(4): 950-963, 2016 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-26787721

RESUMEN

Severe malaria (SM) is a life-threatening complication of infection with Plasmodium falciparum Epidemiological observations have long indicated that immunity against SM is acquired relatively rapidly, but prospective studies to investigate its immunological basis are logistically challenging and have rarely been undertaken. We investigated the merozoite targets and antibody-mediated mechanisms associated with protection against SM in Kenyan children aged 0 to 2 years. We designed a unique prospective matched case-control study of well-characterized SM clinical phenotypes nested within a longitudinal birth cohort of children (n= 5,949) monitored over the first 2 years of life. We quantified immunological parameters in sera collected before the SM event in cases and their individually matched controls to evaluate the prospective odds of developing SM in the first 2 years of life. Anti-AMA1 antibodies were associated with a significant reduction in the odds of developing SM (odds ratio [OR] = 0.37; 95% confidence interval [CI] = 0.15 to 0.90; P= 0.029) after adjustment for responses to all other merozoite antigens tested, while those against MSP-2, MSP-3, Plasmodium falciparum Rh2 [PfRh2], MSP-119, and the infected red blood cell surface antigens were not. The combined ability of total IgG to inhibit parasite growth and mediate the release of reactive oxygen species from neutrophils was associated with a marked reduction in the odds of developing SM (OR = 0.07; 95% CI = 0.006 to 0.82;P= 0.03). Assays of these two functional mechanisms were poorly correlated (Spearman rank correlation coefficient [rs] = 0.12;P= 0.07). Our data provide epidemiological evidence that multiple antibody-dependent mechanisms contribute to protective immunity via distinct targets whose identification could accelerate the development of vaccines to protect against SM.


Asunto(s)
Anticuerpos Antiprotozoarios/fisiología , Malaria Falciparum/inmunología , Plasmodium falciparum/fisiología , Envejecimiento , Antígenos de Protozoos/inmunología , Estudios de Casos y Controles , Niño , Preescolar , Inhibidores de Crecimiento/metabolismo , Humanos , Lactante , Kenia/epidemiología , Merozoítos/inmunología , Oportunidad Relativa , Estallido Respiratorio/fisiología
7.
Mol Cell Proteomics ; 12(12): 3976-86, 2013 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-24043421

RESUMEN

Malaria, an infectious disease caused by parasites of the Plasmodium genus, is one of the world's major public health concerns causing up to a million deaths annually, mostly because of P. falciparum infections. All of the clinical symptoms are associated with the blood stage of the disease, an obligate part of the parasite life cycle, when a form of the parasite called the merozoite recognizes and invades host erythrocytes. During erythrocyte invasion, merozoites are directly exposed to the host humoral immune system making the blood stage of the parasite a conceptually attractive therapeutic target. Progress in the functional and molecular characterization of P. falciparum merozoite proteins, however, has been hampered by the technical challenges associated with expressing these proteins in a biochemically active recombinant form. This challenge is particularly acute for extracellular proteins, which are the likely targets of host antibody responses, because they contain structurally critical post-translational modifications that are not added by some recombinant expression systems. Here, we report the development of a method that uses a mammalian expression system to compile a protein resource containing the entire ectodomains of 42 P. falciparum merozoite secreted and cell surface proteins, many of which have not previously been characterized. Importantly, we are able to recapitulate known biochemical activities by showing that recombinant MSP1-MSP7 and P12-P41 directly interact, and that both recombinant EBA175 and EBA140 can bind human erythrocytes in a sialic acid-dependent manner. Finally, we use sera from malaria-exposed immune adults to profile the relative immunoreactivity of the proteins and show that the majority of the antigens contain conformational (heat-labile) epitopes. We envisage that this resource of recombinant proteins will make a valuable contribution toward a molecular understanding of the blood stage of P. falciparum infections and facilitate the comparative screening of antigens as blood-stage vaccine candidates.


Asunto(s)
Antígenos de Protozoos/genética , Antígenos de Superficie/genética , Eritrocitos/parasitología , Merozoítos/metabolismo , Plasmodium falciparum/genética , Proteoma/genética , Antígenos de Protozoos/inmunología , Antígenos de Protozoos/metabolismo , Antígenos de Superficie/inmunología , Antígenos de Superficie/metabolismo , Proteínas Portadoras/genética , Proteínas Portadoras/inmunología , Proteínas Portadoras/metabolismo , Clonación Molecular , Expresión Génica , Células HEK293 , Humanos , Sueros Inmunes/química , Proteínas de la Membrana/genética , Proteínas de la Membrana/inmunología , Proteínas de la Membrana/metabolismo , Proteína 1 de Superficie de Merozoito/genética , Proteína 1 de Superficie de Merozoito/inmunología , Proteína 1 de Superficie de Merozoito/metabolismo , Merozoítos/química , Merozoítos/inmunología , Anotación de Secuencia Molecular , Biblioteca de Péptidos , Plasmodium falciparum/inmunología , Plasmodium falciparum/metabolismo , Unión Proteica , Proteoma/inmunología , Proteoma/metabolismo , Proteínas Protozoarias/genética , Proteínas Protozoarias/inmunología , Proteínas Protozoarias/metabolismo , Proteínas Recombinantes/genética , Proteínas Recombinantes/inmunología , Proteínas Recombinantes/metabolismo , Ácidos Siálicos/metabolismo
8.
BMC Med ; 12: 183, 2014 Oct 16.
Artículo en Inglés | MEDLINE | ID: mdl-25319190

RESUMEN

BACKGROUND: Polymorphism in antigens is a common mechanism for immune evasion used by many important pathogens, and presents major challenges in vaccine development. In malaria, many key immune targets and vaccine candidates show substantial polymorphism. However, knowledge on antigenic diversity of key antigens, the impact of polymorphism on potential vaccine escape, and how sequence polymorphism relates to antigenic differences is very limited, yet crucial for vaccine development. Plasmodium falciparum apical membrane antigen 1 (AMA1) is an important target of naturally-acquired antibodies in malaria immunity and a leading vaccine candidate. However, AMA1 has extensive allelic diversity with more than 60 polymorphic amino acid residues and more than 200 haplotypes in a single population. Therefore, AMA1 serves as an excellent model to assess antigenic diversity in malaria vaccine antigens and the feasibility of multi-allele vaccine approaches. While most previous research has focused on sequence diversity and antibody responses in laboratory animals, little has been done on the cross-reactivity of human antibodies. METHODS: We aimed to determine the extent of antigenic diversity of AMA1, defined by reactivity with human antibodies, and to aid the identification of specific alleles for potential inclusion in a multi-allele vaccine. We developed an approach using a multiple-antigen-competition enzyme-linked immunosorbent assay (ELISA) to examine cross-reactivity of naturally-acquired antibodies in Papua New Guinea and Kenya, and related this to differences in AMA1 sequence. RESULTS: We found that adults had greater cross-reactivity of antibodies than children, although the patterns of cross-reactivity to alleles were the same. Patterns of antibody cross-reactivity were very similar between populations (Papua New Guinea and Kenya), and over time. Further, our results show that antigenic diversity of AMA1 alleles is surprisingly restricted, despite extensive sequence polymorphism. Our findings suggest that a combination of three different alleles, if selected appropriately, may be sufficient to cover the majority of antigenic diversity in polymorphic AMA1 antigens. Antigenic properties were not strongly related to existing haplotype groupings based on sequence analysis. CONCLUSIONS: Antigenic diversity of AMA1 is limited and a vaccine including a small number of alleles might be sufficient for coverage against naturally-circulating strains, supporting a multi-allele approach for developing polymorphic antigens as malaria vaccines.


Asunto(s)
Antígenos de Protozoos/inmunología , Vacunas contra la Malaria/inmunología , Malaria Falciparum/prevención & control , Proteínas de la Membrana/inmunología , Plasmodium falciparum/inmunología , Proteínas Protozoarias/inmunología , Adolescente , Adulto , Alelos , Anticuerpos Antiprotozoarios/inmunología , Variación Antigénica , Niño , Preescolar , Ensayo de Inmunoadsorción Enzimática , Humanos , Kenia , Vacunas contra la Malaria/genética , Persona de Mediana Edad , Papúa Nueva Guinea , Plasmodium falciparum/genética , Polimorfismo Genético
9.
Vaccines (Basel) ; 12(2)2024 Feb 16.
Artículo en Inglés | MEDLINE | ID: mdl-38400186

RESUMEN

Malaria transmission intensity affects the development of naturally acquired immunity to malaria. An absolute correlate measure of protection against malaria is lacking. However, antibody-mediated functions against Plasmodium falciparum correlate with protection against malaria. In children, antibody-mediated functions against P. falciparum decline with reduced exposure. It is unclear whether adults maintain antibody-mediated functions as malaria transmission declines. This study assessed antibody-dependent respiratory burst (ADRB) in individuals from an area with declining malaria transmission. In an age-matched analysis, we compare ADRB activity during high versus low malaria transmission periods. Age significantly predicted higher ADRB activity in the high (p < 0.001) and low (p < 0.001) malaria transmission periods. ADRB activity was higher during the high compared to the low malaria transmission period in older children and adults. Only older adults during the high malaria transmission period had their median ADRB activity above the ADRB cut-off. Ongoing P. falciparum infection influenced ADRB activity during the low (p = 0.01) but not the high (p = 0.29) malaria transmission period. These findings propose that naturally acquired immunity to P. falciparum is affected in children and adults as malaria transmission declines, implying that vaccines will be necessary to induce and maintain protection against malaria.

10.
Front Immunol ; 15: 1360220, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38650925

RESUMEN

Background: Malaria remains a major global health priority, and monoclonal antibodies (mAbs) are emerging as potential new tools to support efforts to control the disease. Recent data suggest that Fc-dependent mechanisms of immunity are important mediators of protection against the blood stages of the infection, but few studies have investigated this in the context of mAbs. We aimed to isolate mAbs agnostic to cognate antigens that target whole merozoites and simultaneously induce potent neutrophil activity measured by the level of reactive oxygen species (ROS) production using an antibody-dependent respiratory burst (ADRB) assay. Methods: We used samples from semi-immune adults living in coastal Kenya to isolate mAbs that induce merozoite-specific ADRB activity. We then tested whether modifying the expressed IgG1 isotype to an IgG-IgA Fc region chimera would enhance the level of ADRB activity. Results: We isolated a panel of nine mAbs with specificity to whole merozoites. mAb J31 induced ADRB activity in a dose-dependent fashion. Compared to IgG1, our modified antibody IgG-IgA bi-isotype induced higher ADRB activity across all concentrations tested. Further, we observed a negative hook effect at high IgG1 mAb concentrations (i.e., >200 µg/mL), but this was reversed by Fc modification. We identified MSP3.5 as the potential cognate target of mAb J31. Conclusions: We demonstrate an approach to engineer mAbs with enhanced ADRB potency against blood-stage parasites.


Asunto(s)
Anticuerpos Monoclonales , Anticuerpos Antiprotozoarios , Malaria Falciparum , Merozoítos , Neutrófilos , Plasmodium falciparum , Plasmodium falciparum/inmunología , Humanos , Anticuerpos Antiprotozoarios/inmunología , Neutrófilos/inmunología , Neutrófilos/metabolismo , Malaria Falciparum/inmunología , Malaria Falciparum/parasitología , Anticuerpos Monoclonales/inmunología , Merozoítos/inmunología , Estallido Respiratorio/inmunología , Inmunoglobulina G/inmunología , Adulto , Especies Reactivas de Oxígeno/metabolismo , Kenia , Isotipos de Inmunoglobulinas/inmunología , Activación Neutrófila/inmunología , Femenino , Antígenos de Protozoos/inmunología
11.
Infect Immun ; 81(10): 3835-42, 2013 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-23897617

RESUMEN

Prospective studies continue to identify malaria parasite genes with particular patterns of polymorphism which indicate they may be under immune selection, and the encoded proteins require investigation. Sixteen new recombinant protein reagents were designed to characterize three such polymorphic proteins expressed in Plasmodium falciparum schizonts and merozoites: MSPDBL1 (also termed MSP3.4) and MSPDBL2 (MSP3.8), which possess Duffy binding-like (DBL) domains, and SURFIN4.2, encoded by a member of the surface-associated interspersed (surf) multigene family. After testing the antigenicities of these reagents by murine immunization and parasite immunofluorescence, we analyzed naturally acquired antibody responses to the antigens in two cohorts in coastal Kenya in which the parasite was endemic (Chonyi [n = 497] and Ngerenya [n = 461]). As expected, the prevalence and levels of serum antibodies increased with age. We then investigated correlations with subsequent risk of clinical malaria among children <11 years of age during 6 months follow-up surveillance. Antibodies to the polymorphic central region of MSPDBL2 were associated with reduced risk of malaria in both cohorts, with statistical significance remaining for the 3D7 allelic type after adjustment for individuals' ages in years and antibody reactivity to whole-schizont extract (Chonyi, risk ratio, 0.51, and 95% confidence interval [CI], 0.28 to 0.93; Ngerenya, risk ratio, 0.38, and 95% CI, 0.18 to 0.82). For the MSPDBL1 Palo Alto allelic-type antigen, there was a protective association in one cohort (Ngerenya, risk ratio, 0.53, and 95% CI, 0.32 to 0.89), whereas the other antigens showed no protective associations after adjustment. These findings support the prediction that antibodies to the polymorphic region of MSPDBL2 contribute to protective immunity.


Asunto(s)
Anticuerpos Antiprotozoarios/metabolismo , Antígenos de Protozoos/metabolismo , Merozoítos/metabolismo , Plasmodium falciparum/metabolismo , Proteínas Protozoarias/inmunología , Adolescente , Adulto , Anciano , Anciano de 80 o más Años , Animales , Anticuerpos Antiprotozoarios/inmunología , Antígenos de Protozoos/inmunología , Niño , Preescolar , Epítopos , Humanos , Lactante , Ratones , Persona de Mediana Edad , Plasmodium falciparum/genética , Proteínas Protozoarias/genética , Proteínas Protozoarias/metabolismo , Proteínas Recombinantes , Adulto Joven
12.
Clin Infect Dis ; 57(10): 1409-16, 2013 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-23983244

RESUMEN

BACKGROUND: Elucidating the mechanisms of naturally acquired immunity to Plasmodium falciparum infections would be highly valuable for malaria vaccine development. Asymptomatic multiclonal infections have been shown to predict protection from clinical malaria in a transmission-dependent manner, but the mechanisms underlying this are unclear. We assessed the breadth of antibody responses to several vaccine candidate merozoite antigens in relation to the infecting parasite population and clinical immunity. METHODS: In a cohort study in Tanzania, 320 children aged 1-16 years who were asymptomatic at baseline were included. We genotyped P. falciparum infections by targeting the msp2 gene using polymerase chain reaction and capillary electrophoresis and measured antibodies to 7 merozoite antigens using a multiplex assay. We assessed the correlation between the number of clones and the breadth of the antibody response, and examined their effects on the risk of malaria during 40 weeks of follow-up using age-adjusted multivariate regression models. RESULTS: The antibody breadth was positively correlated with the number of clones (RR [risk ratio], 1.63; 95% confidence interval [CI], 1.32-2.02). Multiclonal infections were associated with a nonsignificant reduction in the risk of malaria in the absence of antibodies (RR, 0.83; 95% CI, .29-2.34). The breadth of the antibody response was significantly associated with a reduced risk of malaria in the absence of infections (RR, 0.25; 95% CI, .09-.66). In combination, these factors were associated with a lower risk of malaria than they were individually (RR, 0.14; 95% CI, .04-.48). CONCLUSIONS: These data suggest that malaria vaccines mimicking naturally acquired immunity should ideally induce antibody responses that can be boosted by natural infections.


Asunto(s)
Anticuerpos Antiprotozoarios/inmunología , Antígenos de Protozoos/inmunología , Malaria Falciparum/inmunología , Malaria Falciparum/parasitología , Plasmodium falciparum/inmunología , Proteínas Protozoarias/inmunología , Adolescente , Anticuerpos Antiprotozoarios/biosíntesis , Antígenos de Protozoos/genética , Infecciones Asintomáticas , Niño , Preescolar , Estudios de Cohortes , Genotipo , Humanos , Lactante , Merozoítos/inmunología , Plasmodium falciparum/genética , Proteínas Protozoarias/genética , Riesgo , Tanzanía
13.
Front Immunol ; 14: 1156806, 2023.
Artículo en Inglés | MEDLINE | ID: mdl-37122725

RESUMEN

Introduction: Detailed analyses of genetic diversity, antigenic variability, protein localization and immunological responses are vital for the prioritization of novel malaria vaccine candidates. Comprehensive approaches to determine the most appropriate antigen variants needed to provide broad protection are challenging and consequently rarely undertaken. Methods: Here, we characterized PF3D7_1136200, which we named Asparagine-Rich Merozoite Antigen (ARMA) based on the analysis of its sequence, localization and immunogenicity. We analyzed IgG and IgM responses against the common variants of ARMA in independent prospective cohort studies in Burkina Faso (N = 228), Kenya (N = 252) and Mali (N = 195) using a custom microarray, Div-KILCHIP. Results: We found a marked population structure between parasites from Africa and Asia. African isolates shared 34 common haplotypes, including a dominant pair although the overall selection pressure was directional (Tajima's D = -2.57; Fu and Li's F = -9.69; P < 0.02). ARMA was localized to the merozoite surface, IgG antibodies induced Fc-mediated degranulation of natural killer cells and strongly inhibited parasite growth in vitro. We found profound serological diversity, but IgG and IgM responses were highly correlated and a hierarchical clustering analysis identified only three major serogroups. Protective IgG and IgM antibodies appeared to target both cross-reactive and distinct epitopes across variants. However, combinations of IgG and IgM antibodies against selected variants were associated with complete protection against clinical episodes of malaria. Discussion: Our systematic strategy exploits genomic data to deduce the handful of antigen variants with the strongest potential to induce broad protection and may be broadly applicable to other complex pathogens for which effective vaccines remain elusive.


Asunto(s)
Vacunas contra la Malaria , Malaria Falciparum , Parásitos , Animales , Humanos , Plasmodium falciparum , Merozoítos , Antígenos de Protozoos/genética , Proteínas Protozoarias , Antígenos de Superficie , Estudios Prospectivos , Inmunoglobulina G , Burkina Faso
14.
Sci Transl Med ; 15(682): eabn5993, 2023 02 08.
Artículo en Inglés | MEDLINE | ID: mdl-36753561

RESUMEN

Natural killer (NK) cells are potent immune effectors that can be activated via antibody-mediated Fc receptor engagement. Using multiparameter flow cytometry, we found that NK cells degranulate and release IFN-γ upon stimulation with antibody-opsonized Plasmodium falciparum merozoites. Antibody-dependent NK (Ab-NK) activity was largely strain transcending and enhanced invasion inhibition into erythrocytes. Ab-NK was associated with the successful control of parasitemia after experimental malaria challenge in African adults. In an independent cohort study in children, Ab-NK increased with age, was boosted by concurrent P. falciparum infections, and was associated with a lower risk of clinical episodes of malaria. Nine of the 14 vaccine candidates tested induced Ab-NK, including some less well-characterized antigens: P41, P113, MSP11, RHOPH3, and Pf_11363200. These data highlight an important role of Ab-NK activity in immunity against malaria and provide a potential mechanism for evaluating vaccine candidates.


Asunto(s)
Malaria Falciparum , Malaria , Niño , Adulto , Animales , Humanos , Antígenos de Protozoos , Estudios de Cohortes , Merozoítos , Anticuerpos Antiprotozoarios , Plasmodium falciparum , Células Asesinas Naturales
15.
Nat Commun ; 13(1): 4098, 2022 07 14.
Artículo en Inglés | MEDLINE | ID: mdl-35835738

RESUMEN

Ring-infected erythrocytes are the predominant asexual stage in the peripheral circulation but are rarely investigated in the context of acquired immunity against Plasmodium falciparum malaria. Here we compare antibody-dependent phagocytosis of ring-infected parasite cultures in samples from a controlled human malaria infection (CHMI) study (NCT02739763). Protected volunteers did not develop clinical symptoms, maintained parasitaemia below a predefined threshold of 500 parasites/µl and were not treated until the end of the study. Antibody-dependent phagocytosis of both ring-infected and uninfected erythrocytes from parasite cultures was strongly correlated with protection. A surface proteomic analysis revealed the presence of merozoite proteins including erythrocyte binding antigen-175 and -140 on ring-infected and uninfected erythrocytes, providing an additional antibody-mediated protective mechanism for their activity beyond invasion-inhibition. Competition phagocytosis assays support the hypothesis that merozoite antigens are the key mediators of this functional activity. Targeting ring-stage parasites may contribute to the control of parasitaemia and prevention of clinical malaria.


Asunto(s)
Malaria Falciparum , Malaria , Parásitos , Animales , Anticuerpos Antiprotozoarios , Antígenos de Protozoos , Eritrocitos/parasitología , Humanos , Malaria Falciparum/parasitología , Merozoítos , Parasitemia , Fagocitosis , Plasmodium falciparum , Proteómica
16.
Nat Commun ; 13(1): 331, 2022 01 17.
Artículo en Inglés | MEDLINE | ID: mdl-35039519

RESUMEN

Strengthening malaria surveillance is a key intervention needed to reduce the global disease burden. Reliable serological markers of recent malaria exposure could improve current surveillance methods by allowing for accurate estimates of infection incidence from limited data. We studied the IgG antibody response to 111 Plasmodium falciparum proteins in 65 adult travellers followed longitudinally after a natural malaria infection in complete absence of re-exposure. We identified a combination of five serological markers that detect exposure within the previous three months with >80% sensitivity and specificity. Using mathematical modelling, we examined the antibody kinetics and determined that responses informative of recent exposure display several distinct characteristics: rapid initial boosting and decay, less inter-individual variation in response kinetics, and minimal persistence over time. Such serological exposure markers could be incorporated into routine malaria surveillance to guide efforts for malaria control and elimination.


Asunto(s)
Anticuerpos Antiprotozoarios/inmunología , Biomarcadores/metabolismo , Malaria/epidemiología , Malaria/inmunología , Plasmodium falciparum/inmunología , Proteínas Protozoarias/inmunología , Adulto , Formación de Anticuerpos/inmunología , Niño , Preescolar , Estudios de Cohortes , Epítopos/inmunología , Femenino , Fluorescencia , Humanos , Lactante , Kenia/epidemiología , Cinética , Masculino , Persona de Mediana Edad , Modelos Biológicos , Curva ROC , Adulto Joven
17.
Trends Parasitol ; 37(4): 265-267, 2021 04.
Artículo en Inglés | MEDLINE | ID: mdl-33518435

RESUMEN

The path to a successful international career in science is daunting for most, and women in Africa are no exception. We are grossly under-represented as senior authors in high-impact publications and keynote speakers at international conferences, and rarely head major funding networks. Smashing long-held stereotypes may ease the journey.


Asunto(s)
Ciencia , África , Diversidad Cultural , Femenino , Humanos , Publicaciones/estadística & datos numéricos , Respeto , Ciencia/estadística & datos numéricos , Factores Sexuales , Estereotipo
18.
Infect Immun ; 78(11): 4625-33, 2010 Nov.
Artículo en Inglés | MEDLINE | ID: mdl-20732997

RESUMEN

Although Plasmodium falciparum apical membrane antigen 1 (AMA1) is a leading malaria vaccine candidate, extensive allelic diversity may compromise its vaccine potential. We have previously shown that naturally acquired antibodies to AMA1 were associated with protection from clinical malaria in this Kenyan population. To assess the impact of allelic diversity on naturally acquired immunity, we first sequenced the ectodomain-encoding region of P. falciparum ama1 from subjects with asymptomatic, mild, and severe malaria and measured allele frequency distributions. We then measured antibodies to three allelic AMA1 proteins (AMA1_3D7, AMA1_FVO, and AMA1_HB3) and used competition enzyme-linked immunosorbent assays (ELISAs) to analyze allele-specific antibodies. Seventy-eight unique haplotypes were identified from 129 alleles sampled. No clustering of allelic haplotypes with disease severity or year of sampling was observed. Differences in nucleotide frequencies in clinical (severe plus mild malaria) versus asymptomatic infections were observed at 16 polymorphic positions. Allele frequency distributions were indicative of balancing selection, with the strongest signature being identified in domain III (Tajima's D = 2.51; P < 0.05). Antibody reactivities to each of the three allelic AMA1 proteins were highly correlated (P < 0.001 for all pairwise comparisons). Although antibodies to conserved epitopes were abundant, 48% of selected children with anti-AMA1 IgG (n = 106) had detectable reactivity to allele-specific epitopes as determined by a competition ELISA. Antibodies to both conserved and allele-specific epitopes in AMA1 may contribute to clinical protection.


Asunto(s)
Alelos , Anticuerpos Antiprotozoarios/sangre , Antígenos de Protozoos/inmunología , Variación Genética , Malaria Falciparum/genética , Malaria Falciparum/inmunología , Proteínas de la Membrana/inmunología , Proteínas Protozoarias/inmunología , Inmunidad Adaptativa , Secuencia de Aminoácidos , Estudios de Casos y Controles , Niño , Preescolar , Frecuencia de los Genes , Haplotipos , Humanos , Lactante , Kenia , Malaria Falciparum/parasitología , Malaria Falciparum/fisiopatología , Datos de Secuencia Molecular , Plasmodium falciparum/inmunología , Análisis de Secuencia de ADN , Índice de Severidad de la Enfermedad
19.
PLoS Med ; 7(7): e1000304, 2010 Jul 06.
Artículo en Inglés | MEDLINE | ID: mdl-20625549

RESUMEN

BACKGROUND: Infectious diseases often demonstrate heterogeneity of transmission among host populations. This heterogeneity reduces the efficacy of control strategies, but also implies that focusing control strategies on "hotspots" of transmission could be highly effective. METHODS AND FINDINGS: In order to identify hotspots of malaria transmission, we analysed longitudinal data on febrile malaria episodes, asymptomatic parasitaemia, and antibody titres over 12 y from 256 homesteads in three study areas in Kilifi District on the Kenyan coast. We examined heterogeneity by homestead, and identified groups of homesteads that formed hotspots using a spatial scan statistic. Two types of statistically significant hotspots were detected; stable hotspots of asymptomatic parasitaemia and unstable hotspots of febrile malaria. The stable hotspots were associated with higher average AMA-1 antibody titres than the unstable clusters (optical density [OD] = 1.24, 95% confidence interval [CI] 1.02-1.47 versus OD = 1.1, 95% CI 0.88-1.33) and lower mean ages of febrile malaria episodes (5.8 y, 95% CI 5.6-6.0 versus 5.91 y, 95% CI 5.7-6.1). A falling gradient of febrile malaria incidence was identified in the penumbrae of both hotspots. Hotspots were associated with AMA-1 titres, but not seroconversion rates. In order to target control measures, homesteads at risk of febrile malaria could be predicted by identifying the 20% of homesteads that experienced an episode of febrile malaria during one month in the dry season. That 20% subsequently experienced 65% of all febrile malaria episodes during the following year. A definition based on remote sensing data was 81% sensitive and 63% specific for the stable hotspots of asymptomatic malaria. CONCLUSIONS: Hotspots of asymptomatic parasitaemia are stable over time, but hotspots of febrile malaria are unstable. This finding may be because immunity offsets the high rate of febrile malaria that might otherwise result in stable hotspots, whereas unstable hotspots necessarily affect a population with less prior exposure to malaria.


Asunto(s)
Malaria/epidemiología , Malaria/transmisión , Adolescente , Adulto , Anciano , Anciano de 80 o más Años , Niño , Preescolar , Estudios de Cohortes , Brotes de Enfermedades/estadística & datos numéricos , Fiebre/epidemiología , Fiebre/etiología , Humanos , Incidencia , Lactante , Recién Nacido , Kenia/epidemiología , Estudios Longitudinales , Malaria/complicaciones , Persona de Mediana Edad , Parasitemia/epidemiología , Vigilancia de la Población , Prevalencia , Adulto Joven
20.
Front Immunol ; 11: 505, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-32318061

RESUMEN

Understanding the functional role of proteins expressed by Plasmodium falciparum is an important step toward unlocking potential targets for the development of therapeutic or diagnostic interventions. The armadillo (ARM) repeat protein superfamily is associated with varied functions across the eukaryotes. Therefore, it is important to understand the role of members of this protein family in Plasmodium biology. The Plasmodium falciparum armadillo repeats only (PfARO; Pf3D7_0414900) and P. falciparum merozoite organizing proteins (PfMOP; Pf3D7_0917000) are armadillo-repeat containing proteins previously characterized in P. falciparum. Here, we describe the characterization of another ARM repeat-containing protein in P. falciparum, which we have named the P. falciparum Merozoites-Associated Armadillo repeats protein (PfMAAP). Antibodies raised to three different synthetic peptides of PfMAAP show apical staining of free merozoites and those within the mature infected schizont. We also demonstrate that the antibodies raised to the PfMAAP peptides inhibited invasion of erythrocytes by merozoites from different parasite isolates. In addition, naturally acquired human antibodies to the N- and C- termini of PfMAAP are associated with a reduced risk of malaria in a prospective cohort analysis.


Asunto(s)
Proteínas del Dominio Armadillo/metabolismo , Eritrocitos/inmunología , Malaria Falciparum/metabolismo , Péptidos/metabolismo , Plasmodium falciparum/inmunología , Proteínas Protozoarias/metabolismo , Animales , Anticuerpos Antiprotozoarios/sangre , Proteínas del Dominio Armadillo/genética , Estudios de Cohortes , Eritrocitos/parasitología , Humanos , Inmunidad Humoral , Malaria Falciparum/transmisión , Merozoítos , Péptidos/genética , Estudios Prospectivos , Transporte de Proteínas , Proteínas Protozoarias/genética , Esquizontes
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