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Arafat, D. C.

Publications and source records attributed to Arafat, D. C..

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Profiling gene expression of the host response to a Plasmodium vivax irradiated sporozoite immunization and infectious challenge

The development of vaccines that provide sterile protection against human malaria is a major global public health priority requiring a better understanding of the mechanisms involved in natural and vaccine-induced sterile immunity. RNAseq was used to profile gene expression of peripheral blood samples from 12 Duffy positive (Fy+) (Plasmodium vivax susceptible) volunteers enrolled in a phase 2 trial who were vaccinated with radiation attenuated P. vivax sporozoites (RAS; 5 were protected, 7 not) and from 5 Fy- (P. vivax resistant) volunteers exposed to mosquitoes harboring live non-attenuated sporozoites. Blood samples were obtained before and after immunization as well as after controlled infection with live P vivax sporozoites. The most profound changes in gene expression were observed between baseline and post-challenge, with 97 distinct signatures differentiating protected and not protected Fy+ individuals. Differentiation was also observed between Fy- and Fy+ protected individuals, notably with downregulation of multiple inflammatory responses as well as extracellular matrix-related gene activity. Analysis of transcriptional modules shows that both B-cell and T-cell signaling are reduced while cell cycle regulation, interferon response, and other informative signatures are elevated in individuals who are not protected against malaria. An asymptomatic individual had an intermediate profile indicative of differential transcription associated with pathology and symptomology. Systems biology thus provides insight into how whole malaria-attenuated sporozoites prime the immune system to protect against malaria, as well as the transcription responses that are associated with sterile protection.\n\nAUTHOR SUMMARYTranscriptomic analysis has shed considerable light on the molecular mechanisms of vaccine efficacy against a variety of viral pathogens, but has not yet been used in relation to parasite vaccinology. Here we describe whole peripheral blood gene expression profiling to contrast the contributions of myeloid and lymphoid immune responses to vaccine-induced and natural protection against Plasmodium vivax- mediated malaria. Two modes of modular bioinformatic analyses are applied to RNAseq data from pre- and post-vaccination samples from 19 volunteer participants in a clinical trial investigating the efficacy of an irradiated sporozoite vaccine. During active infection, both B- and T-cell activity are reduced in individuals who are not protected by vaccination relative to those who are protected. Lack of the Fy antigen prevents entry of parasite into red blood cells, thereby providing natural clinical immunity, but we also document differences in T-cell and neutrophil activity in these individuals relative to those protected by irradiation of the parasite. One individual who was asymptomatic for malaria but had blood parasite despite vaccination showed an intermediate response indicating how systems biology approaches can distinguish gene expression associated with pathology and infection.

genomics