A microfluidic-based enzyme inhibition reaction platform and analysis method
A technology of inhibiting reactions and microfluidics, which is applied in the direction of enzyme production/bioreactors, specific-purpose bioreactors/fermenters, biochemical equipment and methods, etc. Poor uniformity and other problems, to achieve the effect of huge market prospect, shorten reaction time, and reduce detection cost
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Embodiment 1
[0027] Embodiment 1 A microfluidic static enzyme inhibition reaction platform and analysis method based on a single air chamber
[0028] Such as figure 1 As shown, a microfluidic enzyme inhibition reaction and analysis platform based on a single air chamber is composed of upper and lower layers. A is a blank cover sheet on the upper layer, and B is a microfluidic chip with immobilized biochemical reagents on the lower layer. The two layers are sealed to form a fluid channel or chamber; the microfluidic chip is composed of enzyme inhibition reaction and analysis functional units; each enzyme inhibition reaction and analysis functional unit is composed of inlet a, enzyme inhibition reaction chamber b, and detection chamber c , Air chamber d composition. Among them, the air chamber d is a closed cavity structure with an elastic polymer film on the top. When the elastic film is pressed by an external force, the elastic film is deformed, the air in the air chamber is exhausted, and po...
Embodiment 2
[0030] Embodiment 2 A microfluidic static enzyme inhibition reaction platform and analysis method based on two air chambers
[0031] A microfluidic static enzyme inhibition reaction and analysis process based on two air chambers image 3 Shown: (1) Press the elastic film on the top of the two air chambers to discharge the air in the air chamber, and a negative pressure is formed inside the microfluidic chip; (2) The injection port of the microfluidic chip is immersed in the sample solution , Or add the sample solution to the sample inlet to maintain the pressure at the top of the other air chamber, and at the same time completely release the pressure of the elastic film on the top of one of the air chambers to form a negative pressure injection, and the solution enters the enzyme inhibition reaction chamber from the sample port; (3) After the enzyme inhibition reaction is over (about 3-10min), all the pressure on the top of the other air chamber is further released, and the genera...
Embodiment 3
[0032] Example 3 A microfluidic enzyme inhibition reaction platform and analysis method based on a reciprocating flow dynamic reaction mode
[0033] In this embodiment, a microfluidic enzyme inhibition reaction platform based on a reciprocating flow dynamic reaction mode and an analysis method such as Figure 4 Shown: (1) Press the elastic film on the top of the air chamber to exhaust the air in the air chamber, and a negative pressure is formed inside the microfluidic chip; (2) Immerse the injection port of the microfluidic chip in the sample solution, or Add the sample solution to the sample inlet, and then release an appropriate amount of pressure from the elastic film on the top of the air chamber to maintain a constant pressure to form a negative pressure injection. The solution enters the enzyme inhibition reaction chamber from the sample port; (3) Continue to press the air chamber, A positive pressure is formed. Under this pressure, the solution will run from the enzyme in...
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