Micro-fluid control electrochemical biological sensing system for simultaneous detection on different serum markers of prostate cancer
A serum marker and biosensing technology, applied in the field of microfluidic electrochemical biosensing system, can solve the problems of inability to simultaneously detect multiple markers, complicated steps for prostate cancer disease, and large size of instruments and equipment, and achieves Ease of integration, low sample consumption, and high sensitivity
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Embodiment 1
[0051] This embodiment adopts such as figure 1 The shown microfluidic electrochemical biosensing system is used for simultaneous rapid detection of multiple protein markers of prostate cancer disease. The steps are as follows. First, 10-50 μg / mL of PSA-Ab, PSMA-Ab, and IL-6-Ab are respectively fixed on the surface of the electrode array to form an array electrochemical sensing interface. Continuously draw a mixture of avidin-HRP, water, buffer (0.01M phosphate, 0.14M NaCl, 2.7mM KCl, pH7.2), biotin-PSA, biotin-PSMA and biotin-IL-6 manually through a 1mL syringe. Concentration of PSA, PSMA and IL-6 antigen mixture solution, there are 0.5-1cm long air bubbles between each functional solution zone, and the volume of each solution zone is 1-20μL; then the prepared chip sensor, The continuous sampling unit and the vacuum system are connected as a whole, and the suction flow rate of the syringe pump is adjusted to 10-20 μL / min. When the solution zone in the delivery unit starts to ...
Embodiment 2
[0053] This embodiment adopts such as figure 1The shown microfluidic electrochemical biosensing system was used for the simultaneous rapid detection of different types of tumor markers including proteins and miRNAs in prostate cancer disease. The steps are as follows, first immobilize 10-50 μg / mL PF-4-Ab and 0-2 μM DNA tetrahedral nanostructure probes on the surface of the electrode array (electrodes for assembling nucleic acid probes need to be directly deposited on the electrode array by electrochemical redox method) Deposit a layer of nano-gold on the surface of the electrode, or directly print the nano-gold layer) to form an array electrochemical sensing interface. Then avidin-HRP, water, buffer (0.01M phosphate, 0.14M NaCl, 2.7mM KCl, pH7.2)), biotin-modified secondary antibody biotin-PF-4 and miR21 The mixture of partially complementary signal probe chain biotin-miR21, and the mixture solution zone of a certain concentration of PF-4 and miR21, there are 0.5-1cm long air...
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