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Journal of Clinical Microbiology
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Parasitology

Rapid Microarray-Based Method for Monitoring of All Currently Known Single-Nucleotide Polymorphisms Associated with Parasite Resistance to Antimalaria Drugs

Andreas Crameri, Jutta Marfurt, Kefas Mugittu, Nicolas Maire, Attila Regös, Jean Yves Coppee, Odile Sismeiro, Richard Burki, Eric Huber, Daniel Laubscher, Odile Puijalon, Blaise Genton, Ingrid Felger, Hans-Peter Beck
Andreas Crameri
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Jutta Marfurt
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Kefas Mugittu
2Ifakara Health Research and Development Centre, P.O. Box 53, Ifakara, Tanzania
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Nicolas Maire
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Attila Regös
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Jean Yves Coppee
3Plate-forme puces a ADN, Genopole/Institut Pasteur, 28 rue du Docteur Roux, 75724 Paris Cedex 15, France
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Odile Sismeiro
3Plate-forme puces a ADN, Genopole/Institut Pasteur, 28 rue du Docteur Roux, 75724 Paris Cedex 15, France
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Richard Burki
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Eric Huber
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Daniel Laubscher
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Odile Puijalon
4Unité d'Immunologie Moléculaire des Parasites, CNRS URA 2581, Institut Pasteur, 28 rue du Docteur Roux, 75724 Paris Cedex 15, France
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Blaise Genton
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Ingrid Felger
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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Hans-Peter Beck
1Swiss Tropical Institute, Socinstrasse 57 Basel, Switzerland
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  • For correspondence: hans-peter.beck@unibas.ch
DOI: 10.1128/JCM.01178-07
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ABSTRACT

Parasite drug resistance is partly conferred by single-nucleotide polymorphisms (SNPs), and monitoring them has been proposed as an alternative to monitoring drug resistance. Therefore, techniques are required to facilitate analyses of multiple SNPs on an epidemiological scale. We report a rapid and affordable microarray technique for application in epidemiological studies of malaria drug resistance. We have designed a multiwell microarray that is used in conjunction with PCR-amplified target genes implicated in the drug resistance of malaria with subsequent one-tube minisequencing using two fluorochromes. The drug-resistance-associated genes pfdhfr, pfdhps, pfcrt, pfmdr1, and pfATPase were amplified and analyzed for cultured Plasmodium falciparum strains and from field samples. We obtained a specificity of 94%, and comparison of field sample results to those of restriction fragment length polymorphism (RFLP) typing resulted in an overall consistency of >90%, except for pfdhfr51, for which most discrepancies were due to false determinations by RFLP of mixed infections. The system is sufficiently sensitive to assay parasites in clinical malaria cases and in most asymptomatic cases, and it allows high throughput with minimal hands-on time. The cost for the assay has been calculated as 0.27 euros/SNP (US$0.33), which is below the cost incurred with other systems. Due to the simplicity of the approach, newly identified SNPs can be incorporated rapidly. Such a monitoring system also makes it possible to identify the reemergence of drug-susceptible parasites once a drug has been withdrawn.

  • Copyright © 2007 American Society for Microbiology
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Rapid Microarray-Based Method for Monitoring of All Currently Known Single-Nucleotide Polymorphisms Associated with Parasite Resistance to Antimalaria Drugs
Andreas Crameri, Jutta Marfurt, Kefas Mugittu, Nicolas Maire, Attila Regös, Jean Yves Coppee, Odile Sismeiro, Richard Burki, Eric Huber, Daniel Laubscher, Odile Puijalon, Blaise Genton, Ingrid Felger, Hans-Peter Beck
Journal of Clinical Microbiology Nov 2007, 45 (11) 3685-3691; DOI: 10.1128/JCM.01178-07

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Rapid Microarray-Based Method for Monitoring of All Currently Known Single-Nucleotide Polymorphisms Associated with Parasite Resistance to Antimalaria Drugs
Andreas Crameri, Jutta Marfurt, Kefas Mugittu, Nicolas Maire, Attila Regös, Jean Yves Coppee, Odile Sismeiro, Richard Burki, Eric Huber, Daniel Laubscher, Odile Puijalon, Blaise Genton, Ingrid Felger, Hans-Peter Beck
Journal of Clinical Microbiology Nov 2007, 45 (11) 3685-3691; DOI: 10.1128/JCM.01178-07
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KEYWORDS

Antimalarials
Oligonucleotide Array Sequence Analysis
Plasmodium falciparum
Polymorphism, Single Nucleotide

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