Looking for Needles in the Plasmodial Haystack
Author(s) -
Lars Hviid
Publication year - 2019
Publication title -
msphere
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.749
H-Index - 39
ISSN - 2379-5042
DOI - 10.1128/msphere.00146-19
Subject(s) - haystack , malaria , plasmodium falciparum , virology , infectious disease (medical specialty) , transmission (telecommunications) , plasmodium (life cycle) , disease , biology , medicine , immunology , computer science , world wide web , parasite hosting , pathology , telecommunications
Plasmodium falciparum malaria remains a globally leading infectious disease problem. Despite decades of intense investigation, an efficacious and practical vaccine offering durable protection to people living in areas with transmission of malaria parasites remains an elusive goal. Our fragmentary understanding of the mechanisms of protective immunity to the disease is a major obstacle, and the almost complete focus on a very small subset of P. falciparum proteins as vaccine candidates has left most parasite antigens essentially unexplored as targets of acquired immunity. However, with the protein microarray technology, it is now possible to interrogate the entire parasite proteome for new vaccine candidates and for markers of parasite exposure. Recent mSphere papers describe the results of such research.
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