Nano composite material for detecting silver ions and preparation method of nano composite material
A technology of nanocomposite materials and silver ions, which is applied in the field of nanocomposite materials for detecting silver ions and its preparation, to achieve the effects of high selective detection, excellent selection and increased sensitivity
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Embodiment 1
[0020] A method for preparing a nano-gold composite material based on exonuclease cycle amplification technology and base mismatch recognition technology proposed by the present invention, comprising the following steps:
[0021] (1) Design and synthesize Ag + Cytosine-rich nucleic acid biomolecules with a certain base length, which are recognized by base mismatches, and which can interact with Ag + A specific base mismatch recognition reaction occurs;
[0022] (2) Wash mercapto magnetic beads (20 μL) with MOPS buffer solution, then mix them with nano-gold carrier solution (400 μL) with hollow and porous structure, add polydiallyldimethylammonium chloride solution (200 μL, 11.664mg / mL), magnetically separated after 10h at 37°C, and washed with MOPS buffer solution;
[0023] (3) Add rhodamine B solution (2μL, final concentration 1.0×10 -4 mol / L), dilute to 100 μL with MOPS buffer solution with pH=7.0, add identifiable Ag after 10 h at 37 °C + Biomolecule solution (10 μL, fi...
Embodiment 2
[0026] A nano-gold composite material based on exonuclease cycle amplification technology and base mismatch recognition technology proposed by the present invention to detect Ag + The method is as follows:
[0027] (1) Dispense 10 μL containing Ag + The sample solution to be tested is added to the nano-gold composite material based on the exonuclease cycle amplification technology and base mismatch recognition technology proposed by the present invention, diluted to 100 μL with MOPS buffer solution (pH=7.0), and added to the exonuclease Enzyme ExoⅢ(20U), shake at 37°C for 2h, recognize Ag on the surface of hollow and porous gold nanocarrier + biomolecules and Ag + A specific recognition reaction occurs to form C-Ag + The -C base pair undergoes conformational transformation at the same time and breaks away from the surface of the nanocarrier, so that the blocked "pore cap" is opened, and the dye molecule rhodamine B in the nanocarrier is released; at the same time, due to th...
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