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Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice

Exosomes are extracellular vesicles of endocytic origin containing molecular signatures implying the cell of origin; thus, they offer a unique opportunity to discover biomarkers of disease. Plasmodium vivax, responsible for more than half of all malaria cases outside Africa, is a major obstacle in t...

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Autores principales: Gualdrón-López, Melisa, Flannery, Erika L., Kangwanrangsan, Niwat, Chuenchob, Vorada, Fernandez-Orth, Dietmar, Segui-Barber, Joan, Royo, Felix, Falcón-Pérez, Juan M., Fernandez-Becerra, Carmen, Lacerda, Marcus V. G., Kappe, Stefan H. I., Sattabongkot, Jetsumon, Gonzalez, Juan R., Mikolajczak, Sebastian A., del Portillo, Hernando A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6026661/
https://www.ncbi.nlm.nih.gov/pubmed/29988527
http://dx.doi.org/10.3389/fmicb.2018.01271
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author Gualdrón-López, Melisa
Flannery, Erika L.
Kangwanrangsan, Niwat
Chuenchob, Vorada
Fernandez-Orth, Dietmar
Segui-Barber, Joan
Royo, Felix
Falcón-Pérez, Juan M.
Fernandez-Becerra, Carmen
Lacerda, Marcus V. G.
Kappe, Stefan H. I.
Sattabongkot, Jetsumon
Gonzalez, Juan R.
Mikolajczak, Sebastian A.
del Portillo, Hernando A.
author_facet Gualdrón-López, Melisa
Flannery, Erika L.
Kangwanrangsan, Niwat
Chuenchob, Vorada
Fernandez-Orth, Dietmar
Segui-Barber, Joan
Royo, Felix
Falcón-Pérez, Juan M.
Fernandez-Becerra, Carmen
Lacerda, Marcus V. G.
Kappe, Stefan H. I.
Sattabongkot, Jetsumon
Gonzalez, Juan R.
Mikolajczak, Sebastian A.
del Portillo, Hernando A.
author_sort Gualdrón-López, Melisa
collection PubMed
description Exosomes are extracellular vesicles of endocytic origin containing molecular signatures implying the cell of origin; thus, they offer a unique opportunity to discover biomarkers of disease. Plasmodium vivax, responsible for more than half of all malaria cases outside Africa, is a major obstacle in the goal of malaria elimination due to the presence of dormant liver stages (hypnozoites), which after the initial infection may reactivate to cause disease. Hypnozoite infection is asymptomatic and there are currently no diagnostic tools to detect their presence. The human liver-chimeric (FRG huHep) mouse is a robust P. vivax infection model for exo-erythrocytic development of liver stages, including hypnozoites. We studied the proteome of plasma-derived exosomes isolated from P. vivax infected FRG huHep mice with the objective of identifying liver-stage expressed parasite proteins indicative of infection. Proteomic analysis of these exosomes showed the presence of 290 and 234 proteins from mouse and human origin, respectively, including canonical exosomal markers. Human proteins include proteins previously detected in liver-derived exosomes, highlighting the potential of this chimeric mouse model to study plasma exosomes derived unequivocally from human hepatocytes. Noticeably, we identified 17 parasite proteins including enzymes, surface proteins, components of the endocytic pathway and translation machinery, as well as uncharacterized proteins. Western blot analysis validated the presence of human arginase-I and an uncharacterized P. vivax protein in plasma-derived exosomes. This study represents a proof-of-principle that plasma-derived exosomes from P. vivax infected FRG-huHep mice contain human hepatocyte and P. vivax proteins with the potential to unveil biological features of liver infection and identify biomarkers of hypnozoite infection.
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spelling pubmed-60266612018-07-09 Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice Gualdrón-López, Melisa Flannery, Erika L. Kangwanrangsan, Niwat Chuenchob, Vorada Fernandez-Orth, Dietmar Segui-Barber, Joan Royo, Felix Falcón-Pérez, Juan M. Fernandez-Becerra, Carmen Lacerda, Marcus V. G. Kappe, Stefan H. I. Sattabongkot, Jetsumon Gonzalez, Juan R. Mikolajczak, Sebastian A. del Portillo, Hernando A. Front Microbiol Microbiology Exosomes are extracellular vesicles of endocytic origin containing molecular signatures implying the cell of origin; thus, they offer a unique opportunity to discover biomarkers of disease. Plasmodium vivax, responsible for more than half of all malaria cases outside Africa, is a major obstacle in the goal of malaria elimination due to the presence of dormant liver stages (hypnozoites), which after the initial infection may reactivate to cause disease. Hypnozoite infection is asymptomatic and there are currently no diagnostic tools to detect their presence. The human liver-chimeric (FRG huHep) mouse is a robust P. vivax infection model for exo-erythrocytic development of liver stages, including hypnozoites. We studied the proteome of plasma-derived exosomes isolated from P. vivax infected FRG huHep mice with the objective of identifying liver-stage expressed parasite proteins indicative of infection. Proteomic analysis of these exosomes showed the presence of 290 and 234 proteins from mouse and human origin, respectively, including canonical exosomal markers. Human proteins include proteins previously detected in liver-derived exosomes, highlighting the potential of this chimeric mouse model to study plasma exosomes derived unequivocally from human hepatocytes. Noticeably, we identified 17 parasite proteins including enzymes, surface proteins, components of the endocytic pathway and translation machinery, as well as uncharacterized proteins. Western blot analysis validated the presence of human arginase-I and an uncharacterized P. vivax protein in plasma-derived exosomes. This study represents a proof-of-principle that plasma-derived exosomes from P. vivax infected FRG-huHep mice contain human hepatocyte and P. vivax proteins with the potential to unveil biological features of liver infection and identify biomarkers of hypnozoite infection. Frontiers Media S.A. 2018-06-25 /pmc/articles/PMC6026661/ /pubmed/29988527 http://dx.doi.org/10.3389/fmicb.2018.01271 Text en Copyright © 2018 Gualdrón-López, Flannery, Kangwanrangsan, Chuenchob, Fernandez-Orth, Segui-Barber, Royo, Falcón-Pérez, Fernandez-Becerra, Lacerda, Kappe, Sattabongkot, Gonzalez, Mikolajczak and del Portillo. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Gualdrón-López, Melisa
Flannery, Erika L.
Kangwanrangsan, Niwat
Chuenchob, Vorada
Fernandez-Orth, Dietmar
Segui-Barber, Joan
Royo, Felix
Falcón-Pérez, Juan M.
Fernandez-Becerra, Carmen
Lacerda, Marcus V. G.
Kappe, Stefan H. I.
Sattabongkot, Jetsumon
Gonzalez, Juan R.
Mikolajczak, Sebastian A.
del Portillo, Hernando A.
Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice
title Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice
title_full Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice
title_fullStr Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice
title_full_unstemmed Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice
title_short Characterization of Plasmodium vivax Proteins in Plasma-Derived Exosomes From Malaria-Infected Liver-Chimeric Humanized Mice
title_sort characterization of plasmodium vivax proteins in plasma-derived exosomes from malaria-infected liver-chimeric humanized mice
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6026661/
https://www.ncbi.nlm.nih.gov/pubmed/29988527
http://dx.doi.org/10.3389/fmicb.2018.01271
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