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Series GSE63260 Query DataSets for GSE63260
Status Public on Nov 15, 2014
Title Plasmodium falciparum gene expression measured directly from tissue during human infection
Platform organism Plasmodium falciparum
Sample organism Homo sapiens
Experiment type Expression profiling by array
Summary Abstract of associated publication: Background: During the latter half of the natural 48-hour intraerythrocytic life cycle of human Plasmodium falciparum infection, parasites sequester deep in endothelium tissues, away from the spleen and inaccessible to peripheral blood. These late-stage parasites may cause tissue damage and likely contribute to clinical disease, and a more complete understanding of their biology is needed. Because these life cycle stages are not easily sampled due to deep tissue sequestration, measuring in vivo gene expression of parasites in the trophozoite and schizont stages has been a challenge. Methods: We developed a custom nCounter® gene expression platform, and used this platform to measure malaria parasite gene expression profiles in vitro and in vivo. We also used imputation to generate global transcriptional profiles, and assessed differential gene expression between parasites growing in vitro and those recovered from malaria-infected patient tissues collected at autopsy. Results: We demonstrate, for the first time, global transcriptional expression profiles from in vivo malaria parasites sequestered in human tissues. We found that parasite physiology can be correlated with in vitro data from an existing life cycle data set, and that parasites in sequestered tissues show an expected schizont-like transcriptional profile, which is conserved across tissues from the same patient. Imputation based on 60 landmark genes generated global transcriptional profiles that were highly correlated with genome-wide expression patterns from the same sample measured by microarray. Finally, differential expression revealed a limited set of in vivo upregulated transcripts, which may indicate unique parasite genes involved in human clinical infections. Conclusions: Our study highlights the utility of a custom nCounter® P. falciparum probe set, validation of imputation within Plasmodium species, and documentation of in vivo schizont-stage expression patterns from human tissues.
 
Overall design 89 sample total; 12 in vitro ring/schizont dilutions; 4 mock FFPE/Filter paper test samples; 4 in vitro control time points; 17 in vivo patient tissue samples; 52 in vivo patient blood samples
 
Contributor(s) Van Tyne D, Milner DA Jr
Citation(s) 25520756
Submission date Nov 13, 2014
Last update date Feb 15, 2015
Contact name Daria Van Tyne
Organization name Harvard Medical School
Street address 243 Charles Street
City Boston
ZIP/Postal code 02114
Country USA
 
Platforms (1)
GPL19413 Broad P. falciparum 328 v1
Samples (89)
GSM1544559 3D7 Ring 390
GSM1544560 3D7 Ring 1563
GSM1544561 3D7 Ring 6250
Relations
BioProject PRJNA267187

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