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A Longitudinal Systems Biological Analysis of Naturally Acquired Malaria Immunity in Mali

Completed
Conditions
Malaria
Registration Number
NCT01322581
Lead Sponsor
National Institute of Allergy and Infectious Diseases (NIAID)
Brief Summary

Plasmodium falciparum (Pf) malaria remains a major cause of morbidity and mortality worldwide. A malaria vaccine would contribute towards efforts to control and eliminate malaria. Optimism that an effective malaria vaccine can be developed is derived in part from the observation that repeated Pf infections can induce protective immunity; however, the mechanisms underlying acquired malaria immunity remain unclear. The goal of the current study is to apply systems biological tools to an observational cohort in an area of intense seasonal Pf transmission to gain insight into the mechanisms underlying naturally acquired malaria immunity. This year-long observational-cohort study of 700 individuals (3 months and 25 years of age) will be conducted in the rural village of Kalifabougou, Mali, where Pf transmission is intense and seasonal. Asymptomatic Pf infection and malaria episodes will be detected by passive and active surveillance. Immune parameters of malaria-protected and -susceptible individuals will be assayed from blood samples collected at strategic time points relative to the malaria season. The primary objective is to identify genome-wide expression profiles induced by Pf infection that are associated with protection from malaria. Secondary objectives include identifying age-related (surrogate for cumulative Pf exposure) changes in Pf-induced gene-expression and serum cytokine profiles, and examining Pf-specific antibody profiles that are associated with protection from malaria using a protein microarray representing 2000 Pf proteins (40 percent of the Pf proteome). Exploratory objectives for this study are to compare the magnitude and quality of the Pf-specific CD4 plus T cell response in malaria-protected and -susceptible individuals and determine how this response varies with age and among individuals before, during, and after malaria season, as well as compare various immune parameters in Pf-infected and uninfected individuals at the end of the dry season to investigate host immune factors associated with chronic asymptomatic Pf infection....

Detailed Description

Plasmodium falciparum (Pf) malaria remains a major cause of morbidity and mortality worldwide. A malaria vaccine would contribute towards efforts to control and eliminate malaria. Optimism that an effective malaria vaccine can be developed is derived in part from the observation that repeated Pf infections can induce protective immunity; however, the mechanisms underlying acquired malaria immunity remain unclear. The goal of the current study is to apply systems biological tools to an observational cohort in an area of intense seasonal Pf transmission to gain insight into the mechanisms underlying naturally acquired malaria immunity. This observational-cohort study of individuals (3 months and 40 years of age) will be conducted in the rural village of Kalifabougou, Mali, where Pf transmission is intense and seasonal. Asymptomatic Pf infection and malaria episodes will be detected by passive and active surveillance. Immune parameters of malaria-protected and -susceptible individuals will be assayed from blood samples collected at strategic time points relative to the malaria season. The primary objective is to identify genome-wide expression profiles induced by Pf infection that are associated with protection from malaria. Secondary objectives include identifying age-related (surrogate for cumulative Pf exposure) changes in Pf-induced gene-expression and serum cytokine profiles, and examining Pf-specific antibody profiles that are associated with protection from malaria using a protein microarray representing 2000 Pf proteins (approximately 40% of the Pf proteome). Exploratory objectives for this study are to compare the magnitude and quality of the Pf-specific CD4+ T cell response in malaria-protected and -susceptible individuals and determine how this response varies with age and among individuals before, during, and after malaria season, as well as compare various immune parameters in Pf-infected and uninfected individuals at the end of the dry season to investigate host immune factors associated with chronic asymptomatic Pf infection.

Recruitment & Eligibility

Status
COMPLETED
Sex
All
Target Recruitment
1188
Inclusion Criteria

Not provided

Exclusion Criteria

Not provided

Study & Design

Study Type
OBSERVATIONAL
Study Design
Not specified
Primary Outcome Measures
NameTimeMethod
Pf expression profilesTriannual cross-sectional surveys and convalescence visits

Identify genome-wide progression profiles induced by Plasmonium falciparum infection that are assocaited with malaria immunity

Secondary Outcome Measures
NameTimeMethod
serum cytokine profilesTriannual cross-sectional surveys and convalescence visits

Examine the relationship between age (surrogate for cumulative Pf exposure) and the gene-expression and serum cytokine profilesinduced by Pf infection.

Pf-specific antibody profilesTriannual cross-sectional surveys and convalescence visits

Identify Pf-specific antibody profiles that are associated with malaria immunity by using a protein microarray representing 2000 Pf proteins (approx. 40% of the Pf proteome), and determine how these profiles change with age. The objective is to validate and extend findings from a preliminary study performed in the nearby village of Kambila, Mali, where a protein microarray containing approx. 23% of the Pf proteome was used to profile Pf-specific antibody responses in children and adults before and after the 6-month malaria season

Trial Locations

Locations (1)

University of Bamako, Faculty of Medicine, Pharmacy and Odontostomatology

🇲🇱

Bamako, Mali

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