IP Library Granted Patent US 11,124,612
Granted Patent B2
US 11,124,612 · App. 16/845,831 · Granted Sep 21, 2021

Facile assembly of soft nanoarchitectures and co-loading of hydrophilic and hydrophobic molecules via flash nanoprecipitation

Inventors: Evan A. Scott (Chicago, IL); Sean D. Allen (Chicago, IL)
Assignee: Northwestern University
C08J3/14A61K9/0019A61K9/107A61K9/1273A61K31/352A61K31/365A61K31/436A61K38/465A61K47/34A61K47/36A61K49/0047A61K49/0054A61K49/0065B01F3/0807B01F3/0861B01F5/02B01F5/0256B01F13/0059C12N15/113C12Y301/03001C08J2371/02C08J2381/02C08J2381/04C12N2310/14C12N2320/32
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Quick Facts
Patent No.
US 11,124,612
App. No.
16/845,831
Granted
Sep 21, 2021
Kind
B2
Abstract

Described herein are flash nanoprecipitation methods capable of encapsulating hydrophobic molecules, hydrophilic molecules, bioactive protein therapeutics, or other target molecules in amphiphilic copolymer nanocarriers.

Claims (23)

1. A bicontinuous nanosphere nanocarrier comprising both an aqueous and lipophilic interior component, the nanocarrier comprising poly(ethylene glycol)-bl-poly(propylene sulfide) (PEG-bl-PPS).

2. The nanocarrier of claim 1 , wherein the PEG-bl-PPS has a glass transition temperature between about −40° C. and about 0° C.

3. The nanocarrier of claim 1 , wherein the PEG-bl-PPS is PEG17-bl-PPS 30 -Thiol.

4. The nanocarrier of claim 1 , wherein the nanocarrier additionally comprise one more target molecules.

5. The nanocarrier of claim 4 , wherein the target molecule is selected from the group consisting of a DNA molecule, an RNA molecule, a plasmid, a peptide, a protein, and combinations thereof.

6. The nanocarrier of claim 4 , wherein the nanocarrier comprises a hydrophobic target molecule and a hydrophilic target molecule.

7. The nanocarrier of claim 1 , wherein the nanocarrier is less than 1060 nm in diameter.

8. The nanocarrier of claim 7 , wherein the nanocarrier is less than 700 nm in diameter.

9. A composition comprising the nanocarrier of claim 1 and a pharmaceutically acceptable carrier.

10. A bicontinuous nanosphere nanocarrier comprising both an aqueous and lipophilic interior component, the bicontinuous nanosphere nanocarrier produced by a flash precipitation method comprising the steps of:

(i) providing an organic phase solution comprising poly(ethylene glycol)-bl-poly(propylene sulfide) (PEG-bl-PPS) and a process solvent, wherein the PEG-bl-PPS has a glass transition temperature below 0° C.,

(ii) providing an aqueous phase solution comprising an aqueous solvent,

(iii) mixing the organic phase solution and the aqueous phase solution by impingement to form a mixture, and

(iv) introducing the mixture into a reservoir to cause precipitation of the PEG-bl-PPS as a bicontinuous nanosphere.

11. The nanocarrier of claim 10 , wherein the organic phase and the aqueous phase are impinged once.

12. The nanocarrier of claim 10 , wherein PEG weight fraction of the PEG-bl-PPS is about 0.12.

13. The nanocarrier of claim 12 , wherein the PEG-bl-PPS is PEG17-bl-PPS 30 -Thiol.

14. The nanocarrier of claim 10 , wherein the bicontinuous nanosphere is monodisperse.

15. The nanocarrier of claim 10 , wherein the process solvent is selected from the group consisting of tetrahydrofuran (THF), dimethylformamide (DMF), and dimethyl sulfoxide (DMSO).

16. The nanocarrier of claim 10 , wherein the aqueous solvent is water.

17. The nanocarrier of claim 10 , additionally comprising a target molecule.

18. The nanocarrier of claim 17 , wherein the organic phase solution additionally comprises a hydrophobic target molecule.

19. The nanocarrier of claim 17 , wherein the aqueous phase solution additionally comprises a hydrophilic target molecule.

Assignments (2)
CONFIRMATORY LICENSE Recorded Feb 3, 2025
From: NORTHWESTERN UNIVERSITY
To: NATIONAL SCIENCE FOUNDATION
Reel/Frame 070609/0209 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 14, 2020
From: SCOTT, EVAN; ALLEN, SEAN D.
To: NORTHWESTERN UNIVERSITY
Reel/Frame 052387/0256 →
Continuity (3)
Division 15656905 · Jul 21, 2017
Provisional Application 62365849 · Jul 22, 2016
Related Publication 20200255603A1 · Aug 13, 2020