Liquid-phase synthesis method of dipeptide diaminobutyroyl benzylamide diacetate
A technology for liquid phase synthesis and snake venom, applied in the field of cosmetics, can solve the problems of high cost and complicated synthesis process, and achieve the effects of low cost, easy separation and simple process
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Embodiment 1
[0024] 1. Synthesis of Boc-β-Ala-Pro-OMe
[0025] Add 3.78g (0.02mol) of Boc-β-Ala-OH to 55mL of nitromethane, and add 6.2mL (0.044mol) of triethylamine, stir and dissolve until clear, then add 5.07g (0.02mol) of N -Ethyl-5-phenylisoxazole-3'-sulfonic acid inner salt, stir and dissolve, then add 3.31g (0.02mol) proline methyl ester hydrochloride (H-Pro-OMe HCl), room temperature Stir the reaction for 10 hours. After the reaction, the reaction solution is concentrated by rotary evaporation. The concentrated product is dissolved in ethyl acetate and washed 3 times with water. The organic phase is concentrated to dryness at 30-40°C to obtain 5.50g of Boc-β-Ala-Pro-OMe , yield 91.51%.
[0026] 2. Synthesis of Boc-β-Ala-Pro-OH
[0027] Add the Boc-β-Ala-Pro-OMe obtained in step 1 into a mixed solution of 60mL tetrahydrofuran, methanol, and 5% LiOH aqueous solution at a volume ratio of 2:1:1, stir and react at room temperature for 2 hours, adjust to 1mol / L hydrochloric acid pH to...
Embodiment 2
[0037] In step 1 of this example, the moles of Boc-β-Ala-OH, triethylamine, N-ethyl-5-phenylisoxazole-3'-sulfonic acid inner salt and H-Pro-OMe·HCl The ratio was 1:2.2:1.2:1, and the reaction time was 11 hours. The other steps of this step were the same as in Example 1, and 5.61g of Boc-β-Ala-Pro-OMe was obtained with a yield of 93.34%.
[0038] In step 2 of this embodiment, the mass fraction of LiOH in the LiOH aqueous solution is 7.5%, and the reaction time is 3 hours. Other steps of this step are the same as in embodiment 1.
[0039] In step 3 of this example, Boc-β-Ala-Pro-OH, triethylamine, N-ethyl-5-phenylisoxazole-3'-sulfonic acid inner salt and H-DAB(Boc)- The mol ratio of OMeHCl is 1:2.2:1.2:1, and the reaction time is 11 hours, other steps of this step are identical with embodiment 1, obtain 7.59g Boc-β-Ala-Pro-DAB(Boc)-OMe, Yield 86.15%.
[0040] In step 4 of this embodiment, the mass fraction of LiOH in the LiOH aqueous solution is 7.5%, and the reaction time is ...
Embodiment 3
[0043] In step 1 of this example, the moles of Boc-β-Ala-OH, triethylamine, N-ethyl-5-phenylisoxazole-3'-sulfonic acid inner salt and H-Pro-OMe·HCl The ratio was 1:2.4:1.5:1, and the reaction time was 12 hours. The other steps of this step were the same as in Example 1, and 5.35g of Boc-β-Ala-Pro-OMe was obtained with a yield of 89.59%.
[0044] In step 2 of this embodiment, the mass fraction of LiOH in the LiOH aqueous solution is 10%, and the reaction time is 4 hours. Other steps of this step are the same as in embodiment 1.
[0045] In step 3 of this example, Boc-β-Ala-Pro-OH, triethylamine, N-ethyl-5-phenylisoxazole-3'-sulfonic acid inner salt and H-DAB(Boc)- The mol ratio of OMeHCl is 1:2.4:1.5:1, and the reaction time is 12 hours, other steps of this step are identical with embodiment 1, obtain 7.39g Boc-β-Ala-Pro-DAB(Boc)-OMe, Yield 83.88%.
[0046] In step 4 of this embodiment, the mass fraction of LiOH in the LiOH aqueous solution is 10%, and the reaction time is 4 ...
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