Preparation of tellurium contained transparent acid with activity of high glutathione peroxidase
A technology of glutathione peroxide and hyaluronic acid, which is applied in the field of biochemistry, can solve problems such as large side effects, low drug efficacy, and cyclodextrin does not have the role of a targeted drug carrier, achieving fewer synthesis steps, The product is easy to purify and the effect of high yield
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Embodiment 1
[0016] Example 1 The synthetic route of tellurium-containing hyaluronic acid:
[0017] (1) Preparation of benzenesulfonyl hyaluronate
[0018] Take 2.0g hyaluronic acid and dissolve it in 80ml NaOH (0.15mol / L) solution, add p-TsCL acetonitrile solution (8.0g / 20ml) dropwise at room temperature, add 1mol / L NaOH continuously during the dropping process to make the solution pH > 12.5 After 3 hours of dropwise addition, stir for 1 hour, adjust to neutral with 1mol / L HCl, add 100ml of methanol, filter off the insoluble matter, evaporate the methanol to 80ml under reduced pressure, put it in a refrigerator at 5°C, and salt will precipitate out after eight days, filter Remove insoluble matter, dialyze in distilled water for 2 days, and set aside.
[0019] (2) Preparation of Sodium Telluride Hydride (NaHTe)
[0020] Add 2.54g of tellurium powder and 1.8g of sodium borohydride to 40ml of absolute ethanol, and gas is generated accompanied by heat release. The system was kept free of o...
Embodiment 2
[0025] Example 2 Determination of Hyaluronic Acid Telluride Activity
[0026] 1. GPX activity of hyaluronic acid telluride
[0027] 500ul bioassay system, containing 50mmol / L potassium phosphate buffer, pH7.0, 1mmol / L sodium azide. 1mmol / L glutathione, 0.25mmol / L coenzyme (NADPH), 1U glutathione reductase, 0.5mmol / L hydrogen peroxide was added to start the reaction, and the absorbance change of NADPH being oxidized was monitored at 340nm. When measuring enzyme activity, distilled water was used instead of tellurium-containing polysaccharide as a blank control. The enzyme activity unit is defined as one micromole of NADPH consumed per micromole of tellurium-containing polysaccharide per minute. Finally, the specific activity of the tellurium-containing polysaccharide obtained under the above conditions was determined to be 174.2 U / umol.
[0028] 2. Antioxidant activity of hyaluronic acid telluride
[0029] The bioassay system is 3ml, take 100ul of the tellurized hyaluronic ...
Embodiment 3
[0030] Example 3 Effects of Activation Conditions on the Activity of Product GPX
[0031] According to the technical process of Example 1, the mass ratios of hyaluronic acid and p-toluenesulfonyl chloride are respectively 1:1, 1:2, 1:3, 1:4, and 1:5. The GPX activity of the obtained tellurium-containing hyaluronic acid was measured according to the detection method in Example 2, and the results were 62.5, 91.3, 130.5, 174.2, and 178.3 U / umol. Except for the ratio of 1:1, the results are all greater than the result of 75.2 U / umol in the background technology. Finally, in the activation process, the optimal mass ratio of hyaluronic acid to p-toluenesulfonyl chloride is 1:4, and the product of tellurium-containing hyaluronic acid has the characteristics of high GPX activity and high utilization rate of p-toluenesulfonyl chloride.
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