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<h2>The previous methodology for the detection of Shiga-toxin relied on inserting the DNA inside the device, which was then amplified by LAMP (heated up to 80 degrees), and then detected by concentration-dependent fluorescence (molecular beacon probes) under UV light. The new approach has implemented the microfluidic chambers, in the sense that channels for different pathogens would be independent of one another, providing a continuous and versatile sampling. | <h2>The previous methodology for the detection of Shiga-toxin relied on inserting the DNA inside the device, which was then amplified by LAMP (heated up to 80 degrees), and then detected by concentration-dependent fluorescence (molecular beacon probes) under UV light. The new approach has implemented the microfluidic chambers, in the sense that channels for different pathogens would be independent of one another, providing a continuous and versatile sampling. |
Revision as of 16:00, 17 October 2018