Metal ion-enhanced enzymatic method for synthesizing isoquercitrin
A technology for metal ions and isoquercitrin, which is applied in the field of metal ion-enhanced enzymatic synthesis of isoquercitrin, can solve the problems of difficulty in preparing isoquercitrin, high hydrolysis temperature, equipment corrosion, etc., and achieves overcoming relatively high catalytic synthesis efficiency. Low, enhanced synthesis efficiency, no effect of environmental pollution
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Embodiment 1
[0026] With 0.01mol / L disodium hydrogen phosphate-0.01mol / L citric acid buffer solution, prepare 0.01g / L rutin mother solution with pH=5. Add 0.1g / L α-L-rhamnosidase solution to the rutin mother liquor by 1% by volume, add CoCl 2 to Co 2+ The concentration was 0.1 mmol / L, and the reaction was shaken at 50 r / min for 1 h at 10°C. After the reaction, the conversion rate of the product isoquercitrin detected by HPLC was calculated to increase by 0.1% relative enzyme activity.
Embodiment 2
[0028] Use 1mol / L disodium hydrogen phosphate-citric acid buffer solution to prepare 1 g / L rutin mother solution with pH=9. Add 100g / L α-L-rhamnosidase solution in the rutin mother liquor by volume ratio 50%, add Na 2 SO 4 to Na + The concentration was 100mmol / L, and the reaction was shaken at 60°C and 200r / min for 48h. After the reaction, the conversion rate of the product isoquercitrin detected by HPLC was calculated to increase by 0.1% relative enzyme activity.
Embodiment 3
[0030] With 0.2mol / L disodium hydrogen phosphate-0.1mol / L citric acid buffer solution, prepare 0.3g / L rutin mother solution with pH=7. Add 10g / L α-L-rhamnosidase solution in the rutin mother liquor by volume ratio 5%, add AlCl 3 to Al 3+ The concentration was 1.0mmol / L, and the reaction was shaken at 120r / min at 40°C for 20h. After the reaction, the conversion rate of the product isoquercitrin detected by HPLC was calculated to increase by 8% relative to the enzyme activity.
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