A high-sensitivity immunoassay for C-reactive protein based on a two-color quantum dot ratiometric fluorescent probe
A technology of ratiometric fluorescent probes and immunoassays, applied in fluorescence/phosphorescence, measurement devices, biological testing, etc., can solve the problems of randomness in the ratio of fluorescence intensity of microspheres, low loading efficiency, fluorescence quenching, etc., to avoid Effect of Luminous Efficiency Decrease
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Embodiment 1
[0039] Add 0.068 g of triethanolamine (TEA) to 25 mL of ultrapure water, and gently magnetically stir the reaction in an oil bath at 80 °C for 30 min. Add 0.38 g of cetyltrimethylammonium bromide (CTAB) and 0.168 g Add sodium salicylate (NaSal) to the above solution, continue stirring for 1 h, then add 4 mL tetraethylorthosilicate (TEOS) to the above water-CTAB-NaSal-TEA solution, continue stirring for 3 h Afterwards, the product was washed three times with absolute ethanol and dispersed in ethanol. After the product from the previous step was ultrasonicated into a homogeneous phase, it was centrifuged and filtered, and the obtained product was added to a mixture of 50 mL of hydrochloric acid and 50 mL of methanol, and magnetically stirred in a water bath at 60°C for 6 h to react twice, and then the product was washed with absolute ethanol Three times, dendritic silica microspheres with an average diameter of 300nm and an average pore diameter of 25nm were obtained (the averag...
Embodiment 2
[0042] Add 0.068 g of triethanolamine (TEA) into 25 mL of ultrapure water, and gently magnetically stir the reaction in an oil bath at 80 °C for 30 min. Add 0.38 g of cetyltrimethylammonium bromide (CTAB) and 0.252 g Add sodium salicylate (NaSal) to the above solution, continue stirring for 1 h, then add 4 mL tetraethylorthosilicate (TEOS) to the above water-CTAB-NaSal-TEA solution, continue stirring for 3 h Afterwards, the product was washed three times with absolute ethanol and dispersed in ethanol. After the product from the previous step was ultrasonicated into a homogeneous phase, it was centrifuged and filtered, and the obtained product was added to a mixture of 50 mL of hydrochloric acid and 50 mL of methanol, and magnetically stirred in a water bath at 60 °C for 6 h to react twice, and then the product was washed with absolute ethanol Three times to obtain dendritic silica microspheres with an average diameter of 300 nm and an average pore diameter of 30 nm. The resul...
Embodiment 3
[0044] Add 0.068 g of triethanolamine (TEA) into 25 mL of ultrapure water, and gently stir the reaction with magnetic force in an oil bath at 80 °C for 30 min. Add 0.38 g of cetyltrimethylammonium bromide (CTAB) and 0.286 Add sodium salicylate (NaSal) to the above solution, continue stirring for 1 h, then add 4 mL tetraethylorthosilicate (TEOS) to the above water-CTAB-NaSal-TEA solution, continue stirring for 3 h Afterwards, the product was washed three times with absolute ethanol and dispersed in ethanol. After the product from the previous step was ultrasonicated into a homogeneous phase, it was centrifuged and filtered, and the obtained product was added to a mixture of 50 mL of hydrochloric acid and 50 mL of methanol, and magnetically stirred in a water bath at 60°C for 6 h to react twice, and then the product was washed with absolute ethanol Three times, dendritic silica microspheres with an average diameter of 300 nm and an average pore diameter of 32 nm were obtained. ...
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