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Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites

Improving the efficiency of malaria diagnosis is one of the main goals of current malaria research. We have recently developed a magneto-optical (MO) method which allows high-sensitivity detection of malaria pigment (hemozoin crystals) in blood via the magnetically induced rotational motion of the h...

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Autores principales: Orbán, Ágnes, Butykai, Ádám, Molnár, András, Pröhle, Zsófia, Fülöp, Gergö, Zelles, Tivadar, Forsyth, Wasan, Hill, Danika, Müller, Ivo, Schofield, Louis, Rebelo, Maria, Hänscheid, Thomas, Karl, Stephan, Kézsmárki, István
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4019541/
https://www.ncbi.nlm.nih.gov/pubmed/24824542
http://dx.doi.org/10.1371/journal.pone.0096981
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author Orbán, Ágnes
Butykai, Ádám
Molnár, András
Pröhle, Zsófia
Fülöp, Gergö
Zelles, Tivadar
Forsyth, Wasan
Hill, Danika
Müller, Ivo
Schofield, Louis
Rebelo, Maria
Hänscheid, Thomas
Karl, Stephan
Kézsmárki, István
author_facet Orbán, Ágnes
Butykai, Ádám
Molnár, András
Pröhle, Zsófia
Fülöp, Gergö
Zelles, Tivadar
Forsyth, Wasan
Hill, Danika
Müller, Ivo
Schofield, Louis
Rebelo, Maria
Hänscheid, Thomas
Karl, Stephan
Kézsmárki, István
author_sort Orbán, Ágnes
collection PubMed
description Improving the efficiency of malaria diagnosis is one of the main goals of current malaria research. We have recently developed a magneto-optical (MO) method which allows high-sensitivity detection of malaria pigment (hemozoin crystals) in blood via the magnetically induced rotational motion of the hemozoin crystals. Here, we evaluate this MO technique for the detection of Plasmodium falciparum in infected erythrocytes using in-vitro parasite cultures covering the entire intraerythrocytic life cycle. Our novel method detected parasite densities as low as ∼40 parasites per microliter of blood (0.0008% parasitemia) at the ring stage and less than 10 parasites/µL (0.0002% parasitemia) in the case of the later stages. These limits of detection, corresponding to approximately 20 pg/µL of hemozoin produced by the parasites, exceed that of rapid diagnostic tests and compete with the threshold achievable by light microscopic observation of blood smears. The MO diagnosis requires no special training of the operator or specific reagents for parasite detection, except for an inexpensive lysis solution to release intracellular hemozoin. The devices can be designed to a portable format for clinical and in-field tests. Besides testing its diagnostic performance, we also applied the MO technique to investigate the change in hemozoin concentration during parasite maturation. Our preliminary data indicate that this method may offer an efficient tool to determine the amount of hemozoin produced by the different parasite stages in synchronized cultures. Hence, it could eventually be used for testing the susceptibility of parasites to antimalarial drugs.
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spelling pubmed-40195412014-05-16 Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites Orbán, Ágnes Butykai, Ádám Molnár, András Pröhle, Zsófia Fülöp, Gergö Zelles, Tivadar Forsyth, Wasan Hill, Danika Müller, Ivo Schofield, Louis Rebelo, Maria Hänscheid, Thomas Karl, Stephan Kézsmárki, István PLoS One Research Article Improving the efficiency of malaria diagnosis is one of the main goals of current malaria research. We have recently developed a magneto-optical (MO) method which allows high-sensitivity detection of malaria pigment (hemozoin crystals) in blood via the magnetically induced rotational motion of the hemozoin crystals. Here, we evaluate this MO technique for the detection of Plasmodium falciparum in infected erythrocytes using in-vitro parasite cultures covering the entire intraerythrocytic life cycle. Our novel method detected parasite densities as low as ∼40 parasites per microliter of blood (0.0008% parasitemia) at the ring stage and less than 10 parasites/µL (0.0002% parasitemia) in the case of the later stages. These limits of detection, corresponding to approximately 20 pg/µL of hemozoin produced by the parasites, exceed that of rapid diagnostic tests and compete with the threshold achievable by light microscopic observation of blood smears. The MO diagnosis requires no special training of the operator or specific reagents for parasite detection, except for an inexpensive lysis solution to release intracellular hemozoin. The devices can be designed to a portable format for clinical and in-field tests. Besides testing its diagnostic performance, we also applied the MO technique to investigate the change in hemozoin concentration during parasite maturation. Our preliminary data indicate that this method may offer an efficient tool to determine the amount of hemozoin produced by the different parasite stages in synchronized cultures. Hence, it could eventually be used for testing the susceptibility of parasites to antimalarial drugs. Public Library of Science 2014-05-13 /pmc/articles/PMC4019541/ /pubmed/24824542 http://dx.doi.org/10.1371/journal.pone.0096981 Text en © 2014 Orbán et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Orbán, Ágnes
Butykai, Ádám
Molnár, András
Pröhle, Zsófia
Fülöp, Gergö
Zelles, Tivadar
Forsyth, Wasan
Hill, Danika
Müller, Ivo
Schofield, Louis
Rebelo, Maria
Hänscheid, Thomas
Karl, Stephan
Kézsmárki, István
Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites
title Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites
title_full Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites
title_fullStr Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites
title_full_unstemmed Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites
title_short Evaluation of a Novel Magneto-Optical Method for the Detection of Malaria Parasites
title_sort evaluation of a novel magneto-optical method for the detection of malaria parasites
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4019541/
https://www.ncbi.nlm.nih.gov/pubmed/24824542
http://dx.doi.org/10.1371/journal.pone.0096981
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