
Development of a novel real-time method to study the erythrocytic life cycle of Plasmodium falciparum using Quartz Crystal Microbalances (eBook, PDF)
Entwicklung einer neuen Echtzeit-Methode zur Untersuchung des erytrozytärer Lebenszyklus von Plasmodium falciparum mit Schwingquarzbiosensoren
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Previous studies carried out by the Biosensor Research Group of the Institute of Clinical and Experimental Transfusion Medicine at the Tübingen University had successfully demonstrated determination of various blood types through the interaction of erythrocytes with immobilised antibodies on a QCM. These studies have opened the possibility to test new applications of this technique for the study of infectious diseases. In our case, studies of the erythrocyte life cycle of P. falciparum, particularly during the last six hours preceding the merozoite release and studies related to reinfection o...
Previous studies carried out by the Biosensor Research Group of the Institute of Clinical and Experimental Transfusion Medicine at the Tübingen University had successfully demonstrated determination of various blood types through the interaction of erythrocytes with immobilised antibodies on a QCM. These studies have opened the possibility to test new applications of this technique for the study of infectious diseases. In our case, studies of the erythrocyte life cycle of P. falciparum, particularly during the last six hours preceding the merozoite release and studies related to reinfection of by merozoites were the focus of our investigation. Release of malaria parasites of P. falciparum from infected erythrocyte at the end of their asexual erythrocyte cycle occurs approximately every 48 hours, asynchronously in parasite culture and synchronously in vivo. This process is poorly studied due to: (I) merozoite release is a very short event (1% in the erythrocytes infected in situ. Our results show, that the QCM technique is an appropriate and important new tool to elucidate the biology of the re-invasion process of Plasmodia.
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