Nucleic acid aptamer-suspension chip magnetic detection microspheres based on single-walled carbon nano-tubes, preparation method and detection method thereof
A technology of single-walled carbon nanotubes and nucleic acid aptamers, which can be used in measurement devices, instruments, fluorescence/phosphorescence, etc. The effect of detection sensitivity
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Embodiment 1
[0060] Example 1. Preparation of single-walled carbon nanotubes modified by surface amination
[0061] Carbon nanotubes were treated by a two-step acidification method: 100 mL of 98% concentrated H 2 S0 4 with 68% concentrated HN0 3 Mix according to the volume ratio of 3:1, add 200mg SWNT to the mixed acid, and reflux for 4h under the condition of ultrasonic vibration at 38°C. After cooling to room temperature, add deionized water to dilute, filter through a cellulose filter, and wash with deionized water until the pH of the filtrate is neutral. The reaction product was placed in an electric blast drying oven, and dried under vacuum at 60° C. overnight.
[0062] 100mL 98% concentrated H 2 S0 4 with 30% H 2 0 2 Mix according to the volume ratio of 4:1, put the mixed acid acidified product in 1 in H 2 S0 4 with H 2 0 2 In the mixed solution, reflux at 70°C for 2h. After cooling to room temperature, add deionized water to dilute, filter with a membrane filter, and was...
Embodiment 2
[0063] Example 2. Coupling of amino-modified single-walled carbon nanotubes and magnetically encoded microspheres on a suspension chip
[0064] Take 3mg of amino-modified SWNT, add 3mL dH 2 In O, ultrasound was performed for 5 minutes, and the cumulative time was repeated 6 times to reach 30 minutes, and ice water was used to cool down halfway. Take 800 μL and disperse into 1.5 mL of distilled water. Take out the brown bottle (52#) of the blank carboxylated fluorescence-encoded magnetic microsphere suspension in a light-proof environment, let it air to room temperature, ultrasonicate in a water bath for 30 seconds, and vortex mix for 1 minute. Take out 120 μL of the suspension into a 1.5 mL centrifuge tube wrapped with aluminum foil, place it on a magnetic separator for 5 min, and suck off the supernatant by adhering to the wall. Add 120 μL of 0.1M MES (pH=4.5) to the microspheres and mix thoroughly to wash the microspheres. Magnetically separate, discard the supernatant, a...
Embodiment 3
[0067] Example 3. Preparation of biotinylated nucleic acid aptamer-coupled fluorescent reporter molecule-streptavidin phycoerythrin
[0068] Take the biotinylated nucleic acid aptamer, centrifuge at 12000rpm for 60s before opening the cap, slowly open the tube cap, add 34 μL of PBS (containing 0.1M MgCl 2 ) buffer solution, prepared as a 100 μM stock solution, covered with a lid and shaken to mix well, and dispensed (2 μL / PCR tube, 10 tubes) for later use, and the rest were stored at -20°C; take 1 tube of 2 μL biotinylated nucleic acid adapter body, treated in a water bath at 95°C for 5 min, and cooled to room temperature. Then make 100-fold dilution to get 1μM, that is, add 198μL Tris-HCl (20mM Tris-HCl, pH=7.4, 100mM NaCl, 2mM MgCl 2 ) Coupling buffer, a total of 200 μL for use; take 2 μL of SA-PE in the dark, dilute 100 times with PBS buffer to 200 μL for use;
[0069] Take 1 μM biotinylated nucleic acid aptamer and 100× diluted SA-PE and mix them at a volume ratio of 3:2...
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