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AbstractThe assessment of naturally-acquired and vaccine-induced immunity to blood-stagePlasmodium falciparummalaria is of long-standing interest. However, the field has suffered from a paucity ofin vitroassays that reproducibly measure the anti-parasitic activity induced by antibodies in conjunction with immune cells. Here we optimize the antibody-dependent respiratory burst (ADRB) assay, which assesses the ability of antibodies to activate the release of reactive oxygen species from human neutrophils in response toP. falciparumblood-stage parasites. We focus particularly on assay parameters affecting serum preparation and concentration and importantly assess reproducibility. Our standardized protocol involves testing each serum sample in singlicate with three independent neutrophil donors and indexing responses against a standard positive control of pooled hyper-immune Kenyan sera. The protocol can be used to quickly screen large cohorts of samples from individuals enrolled in immuno-epidemiological studies or clinical vaccine trials and requires only 6 μL of serum per sample. Using a cohort of 86 samples, we show that malaria-exposed individuals induce higher ADRB activity than malaria-naïve individuals. The development of the ADRB assay complements the use of cell-independent assays in blood-stage malaria, such as the assay of growth inhibitory activity and provides an important standardized cell-based assay in the field.

Original publication

DOI

10.1038/srep14081

Type

Journal article

Journal

Scientific Reports

Publisher

Springer Science and Business Media LLC

Publication Date

16/09/2015

Volume

5