Microfluidic system achieving disease diagnosis through active tiny organisms and diagnosis method of microfluidic system
A technology for microfluidic systems, diagnostic methods, and applications in biochemical equipment and methods, enzymology/microbiology devices, specific-purpose bioreactors/fermenters, etc.
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Embodiment 1
[0058] A typical embodiment of the present invention is Figure 1 ~ Figure 3 shown.
[0059] The schematic diagram of the system structure of Embodiment 1 of the present invention is as follows figure 1 As shown, it includes the control part, the sensing part, the microfluidic chip, the active micro organism and other parts, and the active micro organism is located inside the microfluidic chip.
[0060] The control part is the control center of the whole system, responsible for the tasks of data reception, calculation, processing and other links.
[0061] The sensing part senses, measures, collects, ingests, records, judges, converts, and transmits experimental phenomena and signals that occur inside or on the surface of the microfluidic chip.
[0062] The microfluidic chip in this embodiment is a specific type of the liquid carrier of the present invention. The microfluidic chip contains a plurality of electrodes, and all or part of the electrodes can be cut into or disconn...
Embodiment 2
[0066] A typical embodiment of the present invention is figure 1 , figure 2 , Figure 4 shown.
[0067] The system structural diagram, control logic diagram and corresponding description of Embodiment 2 of the present invention are the same as Embodiment 1.
[0068] The schematic diagram of the diagnostic method of embodiment 2 of the present invention is as Figure 4 As shown, the present embodiment uses comparison droplets, and the comparison droplets are selected as pure water droplets; and fluorescently labeled nematodes are used as the type of active micro organisms, the disease type is selected as cancer, and the test sample is a human urine sample .
[0069] The diagnostic method of Example 2 of the present invention is: through the driving and control of the control part, the nematode-encapsulated droplet is placed between the test sample and the pure water droplet inside or on the surface of the microfluidic chip, and the nematode droplet Close to the other two ...
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