Proceedings of the National Academy of Sciences · 2012 · 214 citations · 26 references
Biomedical AcousticsEngineeringAnalytical MicrosystemsBiological Effects Of Acoustic WavesBiomedical EngineeringUltrasonic FieldsMicrofluidic ManipulationsLaboratory MedicineMicrofluidicsDiagnostic TechnologiesBiophysicsDiagnostic DeviceAcoustic FieldsPhononic LatticesAcoustic PropagationBiomedical AnalysisUltrasoundBiomedical DiagnosticsLab-on-a-chipAcoustic TweezerMicrobiologyReal-time Pcr AmplificationMedicineAcoustic MicroscopyMicromachined Ultrasonic Transducer
Ultrasonics offers the possibility of developing sophisticated fluid manipulation tools in lab-on-a-chip technologies. Here we demonstrate the ability to shape ultrasonic fields by using phononic lattices, patterned on a disposable chip, to carry out the complex sequence of fluidic manipulations required to detect the rodent malaria parasite Plasmodium berghei in blood. To illustrate the different tools that are available to us, we used acoustic fields to produce the required rotational vortices that mechanically lyse both the red blood cells and the parasitic cells present in a drop of blood. This procedure was followed by the amplification of parasitic genomic sequences using different acoustic fields and frequencies to heat the sample and perform a real-time PCR amplification. The system does not require the use of lytic reagents nor enrichment steps, making it suitable for further integration into lab-on-a-chip point-of-care devices. This acoustic sample preparation and PCR enables us to detect ca. 30 parasites in a microliter-sized blood sample, which is the same order of magnitude in sensitivity as lab-based PCR tests. Unlike other lab-on-a-chip methods, where the sample moves through channels, here we use our ability to shape the acoustic fields in a frequency-dependent manner to provide different analytical functions. The methods also provide a clear route toward the integration of PCR to detect pathogens in a single handheld system.
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Weltgesundheitsorganisation · 2005 · 3.8K citations
World Malaria Report, Emerging Infectious Diseases, Global Health +6
Ultrafast microfluidics using surface acoustic waves
Leslie Y. Yeo, James Friend · Biomicrofluidics · 2009 · 382 citations · Full text
Surface acoustic wave actuated cell sorting (SAWACS)
Thomas Franke, Susanne Braunmüller, Lothar Schmid et al. · Lab on a Chip · 2010 · 357 citations