Preparation method of glutathione S-transferase-gold platinum nano-cluster and application of glutathione S-transferase-gold platinum nano-cluster in aureomycin detection
A glutathione and sulfur transfer technology, applied in nanotechnology, metal processing equipment, chemical instruments and methods, etc., can solve the problems of bacterial drug resistance, poor selectivity, low sensitivity, etc., and achieve unique photophysical characteristics, Excellent biocompatibility and good detection sensitivity
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Embodiment 1
[0036]Example 1: Add 50μL of 10mM chloroauric acid solution to 125μL of 20mg ml -1 Add 6.25 μL of chloroplatinic acid with a concentration of 10 mM to the above solution, and mix evenly; adjust the pH of the mixed solution to 3, and the mixed solution is heated at 80 °C. The bath was heated for 5 hours, and dialyzed in phosphate buffer for 24 hours with a dialysis bag with a molecular cut-off of 12-14 kDa to obtain glutathione sulfur transferase-gold platinum nanoclusters.
Embodiment 2
[0037] Example 2: Add 50μL of 10mM chloroauric acid solution to 125μL of 20mg ml -1 Add 6.25 μL of chloroplatinic acid with a concentration of 10 mM to the above solution and mix evenly; adjust the pH of the mixed solution to 7, and the mixed solution is heated at 80 °C. The bath was heated for 5 hours, and dialyzed in phosphate buffer with a dialysis bag with a molecular cut-off of 12-14 kDa for 24 hours to obtain the product glutathione thiotransferase-gold platinum nanoclusters.
Embodiment 3
[0038] Example 3: Add 50 μL of 10 mM chloroauric acid solution to 125 μL of 20 mg ml -1 Add 6.25 μL of 10 mM chloroplatinic acid into the above solution, and mix well; adjust the pH of the mixed solution to 11, and the mixed solution is heated at 80 °C. The bath was heated for 5 hours, and dialyzed in phosphate buffer with a dialysis bag with a molecular cut-off of 12-14 kDa for 24 hours to obtain the product glutathione thiotransferase-gold platinum nanoclusters.
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