Multifunctional H-type polyethylene glycol derivative and preparation method thereof
A technology for polyethylene glycol and derivatives, applied in the field of multifunctional H-type polyethylene glycol derivatives and its preparation, can solve problems such as failure to meet biological safety requirements, disappearance, and decline in drug activity, and achieve structural and The effect of enriching performance, promoting functional groups, and weakening stereoscopic effect
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[0115] In the preparation method part of the present invention, dotted lines are used in the structural formulas of some skeleton groups to indicate that the skeletons will be directly connected to the groups shown in the structural formulas in the specified compounds.
[0116] In the present invention, the ring structure is represented by a circle, and different labels are given according to the difference of the ring structure. E.g,
[0117] represents any ring structure;
[0118] Represents an aliphatic ring structure without any aromatic or heteroaromatic rings, also known as aliphatic rings;
[0119] Represents an aromatic ring structure, containing at least one aromatic ring or heteroaromatic ring, also known as an aromatic ring;
[0120] Indicates the skeleton of sugars or sugar derivatives containing cyclic monosaccharide skeletons, also known as sugar rings;
[0121] Indicates a ring containing amide bonds, ester bonds, imides, acid anhydrides and other c...
Embodiment 1
[1679] Embodiment 1: Preparation of H-type polyethylene glycol terminal hydroxyl derivatives
[1680] Synthesis of Hydroxyl Derivatives H1-H1-1
[1681] In this example, the type H polyethylene glycol compound is selected as F 1 =F 2 =-CH 2 CH 2 Oh, (U 1 , U 2 symmetrical, L 1 =L 2 =L 3 =L 4 =CH 2 , L 5 , L 6 does not exist), j=1, W 0 for -CH 2 CH 2 -, m 1 =0. The total molecular weight is designed to be about 25000, and the molecular weight of the four branched chains is about 4*5000=20000, namely n 1 ≈n 2 ≈n 3 ≈n 4 ≈114, the molecular weight of the main chain is about 5000, m 2 ≈113.
[1682]
[1683] a. In an anhydrous and oxygen-free airtight reaction kettle, sequentially add tetrahydrofuran (250mL), ethylene glycol (2.532mmol) and diphenylmethyl potassium (4.0mmol);
[1684] B, adding the calculated amount of oxirane (570mmol), gradually warming up to a temperature of 60 ° C, reacted for 48 hours;
[1685] c. Add excess diphenylmethyl potass...
Embodiment 2
[1697] Embodiment 2: the preparation of H type polyethylene glycol sulfonate derivative
[1698] Synthesis of Sulfonate Derivatives B1-B1-1
[1699] In this example, the type H polyethylene glycol compound is selected as F 1 =F 2 =Ts(p-toluenesulfonyl), j=1,W 0 for CH 2 CH 2 ,m 1 =0. The total molecular weight is designed to be about 25000, and the molecular weight of the four branched chains is about 4*5000=20000, namely n 1 ≈n 2 ≈n 3 ≈n 4 ≈114, the molecular weight of the main chain is about 5000, m 2 ≈113.
[1700]
[1701] After adding 40g of tetrahydroxyl H-type branched polyethylene glycol (H1-H1-1) with symmetrical bifurcation points in a dry and clean 1L round bottom flask, nitrogen protection, add 500mL of anhydrous anhydrous Oxygen dichloromethane, 20mL pyridine and 5g p-toluenesulfonyl chloride, reacted at room temperature for 24 hours, added 1mol / L hydrochloric acid to neutralize to pH<7, washed the aqueous phase with dichloromethane (3*50mL), comb...
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