Anticoagulant active peptide derivative and preparation method and application thereof
A technology of anticoagulant activity and peptide derivatives, applied in the field of biomedicine, can solve problems such as short half-life, achieve long half-life, good protection of peptide activity, and high antioxidant performance
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Embodiment 1
[0042] 1. Synthetic raw materials and related reagents:
[0043] Fmoc-L-GLu(ODmab)-OH, Aimeijie Technology Co., Ltd.;
[0044] Fmoc-L-Asn(Trt)-OH, Suzhou Tianma Pharmaceutical Group;
[0045] Fmoc-L-Met(O 2 )-OH, Gill Biochemical (Shanghai) Co., Ltd.;
[0046] Fmoc-L-His(Boc)-OH, Gill Biochemical (Shanghai) Co., Ltd.;
[0047] Fmoc-L-Lys(Boc)-OH, Gill Biochemical (Shanghai) Co., Ltd.;
[0048] Fmoc-L-Phe-OH, Gill Biochemical (Shanghai) Co., Ltd.;
[0049]p-Hydroxycinnamic acid was purchased from Shanghai Jizhi Biochemical Technology Co., Ltd.
[0050] 2. The preparation of an anticoagulant active peptide derivative is synthesized by FMOC-short peptide solid-phase synthesis method, specifically:
[0051] S1: Weigh 0.8g AM Resin resin with a substitution degree of 0.4mmoL / g into a solid-phase synthesizer, add 10mL of anhydrous dichloromethane (hereinafter referred to as DCM), place on a shaker and shake for 30min to fully swell the resin ;
[0052] S2: Connect the first ...
Embodiment 2
[0062] A structural formula of an anticoagulant active peptide derivative is as follows:
[0063]
[0064] The preparation process of an anticoagulant active peptide derivative is the same as that in Example 1, and the purity of the obtained anticoagulant active peptide derivative is 96.4%.
Embodiment 3
[0066] A structural formula of an anticoagulant active peptide derivative is as follows:
[0067]
[0068] The preparation process of an anticoagulant active peptide derivative is the same as that in Example 1, and the purity of the obtained anticoagulant active peptide derivative is 96.9%.
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