Polypeptide polymer nanomaterial and preparing method and application thereof
A technology of nanomaterials and peptide polymers, applied in drug combinations, pharmaceutical formulations, peptide/protein components, etc., can solve problems such as poor therapeutic effects, achieve wide application prospects, improve efficiency, and achieve good biocompatibility effects
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Embodiment 1
[0065] In this embodiment, the structure of the polypeptide polymer nanomaterial is as follows:
[0066]
[0067] That is, in the formula I provided by the present invention, R 1 The donor is CFFVLKG, R 2 The donor is CTNVFNATFHIWHSGQFGT, R 3 The donor is carboxy-terminated polyethylene glycol with a molecular weight of 368 g mol -1 , m / n=1 / 1 is M 1-1 .
[0068] The synthetic method of described polypeptide polymer is as follows:
[0069] Using resin as a carrier, carboxyl-terminated polyethylene glycol and amino acid as raw materials, according to the connection sequence of the polypeptide, using solid-phase synthesis method, the carboxyl-terminated polyethylene glycol and amino acid are coupled in sequence, and finally trifluoroacetic acid. The product is cleaved from the carrier and purified to obtain the polypeptide compound HS-R 1 -R 3 and R 2 -SH;
[0070] HS-R 1 -R 3 and R 2 -SH performs Michale addition reaction with excess acrylylated chitosan according...
Embodiment 2
[0072] The only difference from Example 1 is that the HS-R 1 -R 3 and R 2 -SH performs Michale addition reaction with excess acrylylated chitosan according to a ratio of 1 / 3 to obtain a polypeptide polymer. Since m / n=1 / 3, it is denoted as M 1-3 .
Embodiment 3
[0074] The only difference from Example 1 is that the HS-R 1 -R 3 and R 2 -SH performs Michale addition reaction with excess acrylylated chitosan according to the ratio of 3 / 1 to obtain a polypeptide polymer. Since m / n=3 / 1, it is denoted as M 3-1 .
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