IP Library Granted Patent US 12673029
Granted Patent B2
US 12673029 · App. 18/241,928 · Granted Jul 7, 2026

Nanodelivery system based on globulin-1 S allele, preparation method therefor and use thereof

Inventors: Linglin Fu (Hangzhou, CN); Chong Wang (Hangzhou, CN); Jinru Zhou (Hangzhou, CN); Li Wang (Hangzhou, CN); Shunyu Wang (Hangzhou, CN)
Assignee: Zhejiang Gongshang University
A61K9/5176A61K9/08
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Quick Facts
Patent No.
US 12673029
App. No.
18/241,928
Granted
Jul 7, 2026
Kind
B2
Abstract

A nanodelivery system based on globulin-1 S allele, a preparation method therefor and use thereof are provided. The preparation method includes the following steps of: dissolving globulin-1 S allele in a NaCl solution, and performing magnetical stirring until the globulin-1 S allele is completely dissolved to obtain a mixed solution; self-assembly: centrifuging the mixed solution, taking the supernatant to be dispersed into a dispersion solution for self-assembly to obtain a globulin-1 S allele dispersion; and adding hydrophobic plant polyphenol to the globulin-1 S allele dispersion, performing well mixing and centrifuging, and removing the supernatant to obtain the nanodelivery system based on the globulin-1 S allele.

Claims (10)

1 . A preparation method for a nanodelivery system based on a globulin-1 S allele, wherein the nanodelivery system based on the globulin-1 S allele comprises a carrier and a hydrophobic plant polyphenol, and the carrier is the globulin-1 S allele, and the hydrophobic plant polyphenol is curcumin or hesperetin; and the nanodelivery system based on the globulin-1 S allele is nanoparticles;

the method comprises the following steps of:

(1) dissolving the globulin-1 S allele in a NaCl solution to obtain a globulin-1 S allele-containing NaCl solution, and performing a magnetical stirring on the globulin-1 S allele-containing NaCl solution until the globulin-1 S allele is completely dissolved to obtain a mixed solution;

(2) a self-assembly: centrifuging the mixed solution in the step (1) to obtain a first supernatant, and taking the first supernatant into a dispersion solution for the self-assembly to obtain a globulin-1 S allele dispersion; and

(3) adding the hydrophobic plant polyphenol to the globulin-1 S allele dispersion in the step (2) to obtain a hydrophobic plant polyphenol-containing globulin-1 S allele dispersion, conducting well mixing and centrifuging on the hydrophobic plant polyphenol-containing globulin-1 S allele dispersion to obtain a second supernatant, and removing the second supernatant to obtain the nanodelivery system based on the globulin-1 S allele.

2 . The preparation method according to claim 1 , wherein a concentration ratio of the hydrophobic plant polyphenol added in the step (3) to the globulin-1 S allele dispersion ranges from (1-10):1.

3 . The preparation method according to claim 1 , wherein a dispersing method in the step (2) comprises: dropwise dispersing the first supernatant obtained after the centrifuging into the dispersion solution.

4 . The preparation method according to claim 1 , wherein a volume ratio of the first supernatant to the dispersion solution in the step (2) is (2-5):1.

5 . The preparation method according to claim 1 , wherein the dispersion solution in the step (2) has a pH value of 6.5-7.5.

6 . The preparation method according to claim 1 , wherein the NaCl solution in the step (1) has a mass fraction of 5%-15%.