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12 p, 1.1 MB The machinery underlying malaria parasite virulence is conserved between rodent and human malaria parasites / De Niz, Mariana (University of Bern (Suïssa)) ; Ullrich, Ann-Katrin (Bernhard-Nocht-Institut für Tropenmedizin) ; Heiber, Arlett (Bernhard-Nocht-Institut für Tropenmedizin) ; Blancke Soares, Alexandra (Bernhard-Nocht-Institut für Tropenmedizin) ; Pick, Christian (Universität Hamburg) ; Lyck, Ruth (University of Bern (Suïssa)) ; Keller, Derya (University of Bern (Suïssa)) ; Kaiser, Gesine (University of Bern (Suïssa)) ; Prado, Monica (Bernhard-Nocht-Institut für Tropenmedizin) ; Flemming, Sven (Bernhard-Nocht-Institut für Tropenmedizin) ; Portillo Obando, Hernando A. del (Institut Germans Trias i Pujol) ; Janse, Chris J. (Leiden University Medical Center (Leiden, Països Baixos) ; Heussler, Volker T. (University of Bern (Suïssa)) ; Spielmann, Tobias (Bernhard-Nocht-Institut für Tropenmedizin)
Sequestration of red blood cells infected with the human malaria parasite Plasmodium falciparum in organs such as the brain is considered important for pathogenicity. A similar phenomenon has been observed in mouse models of malaria, using the rodent parasite Plasmodium berghei, but it is unclear whether the P. [...]
2016 - 10.1038/ncomms11659
Nature communications, Vol. 7 (May 2016) , article 11659  

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