author_facet López, José A.
López, José A.
author López, José A.
spellingShingle López, José A.
Blood
Malignant malaria and microangiopathies: merging mechanisms
Cell Biology
Hematology
Immunology
Biochemistry
author_sort lópez, josé a.
spelling López, José A. 0006-4971 1528-0020 American Society of Hematology Cell Biology Hematology Immunology Biochemistry http://dx.doi.org/10.1182/blood-2009-12-254060 <jats:title>Abstract</jats:title> <jats:p>In this issue of Blood, Bridges and colleagues report that Plasmodium falciparum–infected erythrocytes are able to attach to the endothelial surface by binding platelet-decorated VWF strands in a CD36-dependent fashion, revealing a new mechanism for erythrocyte cytoadherence in malaria.1</jats:p> Malignant malaria and microangiopathies: merging mechanisms Blood
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title Malignant malaria and microangiopathies: merging mechanisms
title_unstemmed Malignant malaria and microangiopathies: merging mechanisms
title_full Malignant malaria and microangiopathies: merging mechanisms
title_fullStr Malignant malaria and microangiopathies: merging mechanisms
title_full_unstemmed Malignant malaria and microangiopathies: merging mechanisms
title_short Malignant malaria and microangiopathies: merging mechanisms
title_sort malignant malaria and microangiopathies: merging mechanisms
topic Cell Biology
Hematology
Immunology
Biochemistry
url http://dx.doi.org/10.1182/blood-2009-12-254060
publishDate 2010
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description <jats:title>Abstract</jats:title> <jats:p>In this issue of Blood, Bridges and colleagues report that Plasmodium falciparum–infected erythrocytes are able to attach to the endothelial surface by binding platelet-decorated VWF strands in a CD36-dependent fashion, revealing a new mechanism for erythrocyte cytoadherence in malaria.1</jats:p>
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author López, José A.
author_facet López, José A., López, José A.
author_sort lópez, josé a.
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description <jats:title>Abstract</jats:title> <jats:p>In this issue of Blood, Bridges and colleagues report that Plasmodium falciparum–infected erythrocytes are able to attach to the endothelial surface by binding platelet-decorated VWF strands in a CD36-dependent fashion, revealing a new mechanism for erythrocyte cytoadherence in malaria.1</jats:p>
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spelling López, José A. 0006-4971 1528-0020 American Society of Hematology Cell Biology Hematology Immunology Biochemistry http://dx.doi.org/10.1182/blood-2009-12-254060 <jats:title>Abstract</jats:title> <jats:p>In this issue of Blood, Bridges and colleagues report that Plasmodium falciparum–infected erythrocytes are able to attach to the endothelial surface by binding platelet-decorated VWF strands in a CD36-dependent fashion, revealing a new mechanism for erythrocyte cytoadherence in malaria.1</jats:p> Malignant malaria and microangiopathies: merging mechanisms Blood
spellingShingle López, José A., Blood, Malignant malaria and microangiopathies: merging mechanisms, Cell Biology, Hematology, Immunology, Biochemistry
title Malignant malaria and microangiopathies: merging mechanisms
title_full Malignant malaria and microangiopathies: merging mechanisms
title_fullStr Malignant malaria and microangiopathies: merging mechanisms
title_full_unstemmed Malignant malaria and microangiopathies: merging mechanisms
title_short Malignant malaria and microangiopathies: merging mechanisms
title_sort malignant malaria and microangiopathies: merging mechanisms
title_unstemmed Malignant malaria and microangiopathies: merging mechanisms
topic Cell Biology, Hematology, Immunology, Biochemistry
url http://dx.doi.org/10.1182/blood-2009-12-254060