A centrifugal disc microfluidic chip and its application method
A centrifugal disk and chip technology, which is applied in chemical instruments and methods, laboratory containers, and analysis by making materials undergo chemical reactions, can solve the problems of difficult transfer of micro magnetic beads and difficult transfer of magnetic beads
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Embodiment 1
[0036] This embodiment provides a centrifugal disc microfluidic chip based on immunochemiluminescence reaction, which includes a chip body and a magnetic bead transfer module. The chip body is provided with a plurality of centrifugal units, and the centrifugal units contain different fluid chambers. The fluid chamber contains reaction reagents, magnetic beads and organic reagents, the magnetic beads can move between different fluid chambers, and the organic reagents are used to reduce the viscosity and interfacial tension of the reaction reagents to facilitate the reaction between the magnetic beads and After the reagent is separated, it moves to other fluid chambers, and the magnetic bead transfer module is used to provide a magnetic driving force to transfer the magnetic beads to different fluid chambers.
[0037] Specifically, each of the centrifugal units can complete one detection index, thus, according to the configuration and combination of the centrifugal units, the joi...
Embodiment 2
[0069] In order to show that the addition of organic reagents will be beneficial to the transfer of magnetic beads, this example uses a centrifugal disc microfluidic chip based on immunochemiluminescent reaction as shown in Example 1 to carry out the following experiments. In this example, the organic reagent is isopropyl alcohol.
[0070] Mix 70 μL of magnetic bead dispersion (0.2857 mg / mL) of magnetic beads bound to biotinylated antibody, 70 μL of commercial alkaline phosphatase-labeled antibody solution (6 μg / ml) diluted with enzyme label diluent, and carcinoembryonic antigen (CEA ) solution (1000ng / mL) 10 μL was mixed in the centrifuge tube (referred to as the reaction mixture), and immediately added to the sample inlet chamber 33 from the sample inlet 43 on the chip body 1 . Fix the chip body 1 in the rotating shaft of the centrifugal device through the central hole on the chip body 1, and set the corresponding working parameters of the centrifugal device. The centrifuga...
Embodiment 3
[0075] In order to verify whether isopropanol has an adverse effect on the magnetic bead-based sandwich immunochemiluminescence reaction system used, this example will perform the magnetic bead-based sandwich immunochemiluminescence reaction in the centrifugal disk microfluidics after the completion of , take out the reaction solution from the chemiluminescent reaction chamber 38, and then perform signal detection on a microplate reader. The chip body 1 used in this embodiment is as Figure 5 As shown, the difference between its structure and the first embodiment is that the roof layer 4 is slightly different, and the rest are the same.
[0076] The top plate layer 4 of the chip body 1 in this embodiment is as Figure 6 shown. The difference between the top plate layer 4 and the first embodiment is that it also includes a sampling hole 47 . The sampling hole 47 is located on the upper right side of the chemiluminescence reaction chamber 38, which is sealed by a film contain...
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