IP Library Granted Patent US 9,327,143
Granted Patent B2
US 9,327,143 · App. 12/812,078 · Granted May 3, 2016

Use of polyelectrolyte complexes in antiperspirant technology

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Quick Facts
Patent No.
US 9,327,143
App. No.
12/812,078
Granted
May 3, 2016
Kind
B2
Abstract

Polyelectrolyte complexes between cationic polymers and anionic polymers are used in antiperspirant compositions containing an active antiperspirant ingredient.

Claims (42)

1. An antiperspirant microgel comprising:

a) an active antiperspirant ingredient selected from the group consisting of titanium dioxide or zinc oxide and

b) a polyelectrolyte complex comprising

(i) polyquaternium-28

(ii) polyvinylmethyl/maleic acid copolymer

wherein the charge ratio of (i):(ii) is from about 0.70 to about 1.80; and wherein the microgel has an average particle size sufficient to allow the antiperspirant microgel to enter a human sweat gland pore and form a polymeric plug therein, wherein the antiperspirant microgel has an antiperspirant effect.

2. The microgel according to claim 1 wherein the charge ratio is about 0.90 to about 1.50.

3. The microgel according to claim 1 wherein the charge ratio is 1.

4. The microgel according to claim 1 wherein the average microgel particle size is about 0.2 μm to about 100 μm.

5. The microgel according to claim 4 wherein the average particle size is about 5 μm to about 60 μm.

6. The microgel according to claim 1 wherein the mole ratio of the polyvinylmethyl/maleic acid copolymer to the polyquaternium-28 polymer at pH 7 is from about 1.39 to about 3.06.

7. The microgel according to claim 6 wherein the mole ratio is from about 1.50 to about 2.55.

8. The microgel according to claim 1 wherein the weight ratio of the polyquaternium-28 polymer to the polyvinylmethyl/maleic acid copolymer is from about 6 to 15.

9. The microgel according to claim 8 wherein the weight ratio is from 7.0 to 11.91.

10. The microgel according to claim 1 wherein the weight ratio of the polyquaternium-28 polymer to the polyvinyl methyl/maleic acid copolymer is from about 2.44 to about 5.37.

11. The microgel according to claim 10 wherein the weight ratio is from 2.68 to 4.47.

12. The micro gel according to claim 1 further comprising an aluminum salt.

13. The microgel according to claim 1 wherein the active antiperspirant ingredient is from 0.5 weight percent to 35 weight percent of the microgel.

14. A method of reducing sweat production from a human sweat gland comprising applying the antiperspirant microgel according to claim 1 to pores of a human sweat gland.

15. A method of preparing the antiperspirant microgel according to claim 1 comprising combining the polyvinylmethyl/maleic acid copolymer and polyquaternium-28 in an amount of solvent effective to solubilize the anionic copolymer and cationic copolymer and disperse the microgels.

16. The method according to claim 15 wherein the solvent is water.

17. The method according to claim 15 wherein the solvent is 60% ethanol in water.

18. An antiperspirant microgel comprising a polyelectrolyte complex of

(i) polyquaternium-28

(ii) polyvinylmethyl/maleic acid copolymer

wherein in the charge ratio of (i):(ii) is from about 0.70 to about 1.80;

(iii) a multivalent metal salt selected from the group consisting of titanium dioxide or zinc oxide; wherein

the microgel has an average particle size sufficient to allow the microgel to enter a human sweat gland pore and form a polymeric plug therein, wherein the antiperspirant microgel provides an antiperspirant effect;

and wherein the microgel is substantially free of an aluminum salt.

19. A method of reducing sweat in a human in need thereof comprising applying to pores of the human's sweat glands a microgel comprising a polyelectrolyte complex comprising

(i) a cationic polyquaternium polymer; and

(ii) an anionic copolymer comprising mono-, di- or tri-acid groups, or salts thereof;

wherein in the charge ratio of (i):(ii) is from about 0.70 to about 1.80; and

an average microgel particle size sufficient to allow the microgel to enter a human sweat gland pore and to form a polymeric plug therein.

20. An antiperspirant microgel consisting essentially of

a) a polyelectrolyte complex of

(i) polyquaternium-28; and

(ii) polyvinylmethyl/maleic acid copolymer and

b) a titanium dioxide or zinc oxide nanoparticle;

wherein in the charge ratio of (i):(ii) is from about 0.70 to about 1.80; and wherein the microgel has an average particle size sufficient to allow the microgel to enter a human sweat gland pore and form a polymeric plug therein providing an antiperspirant effect.

21. The microgel according to claim 20 having 1% by weight titanium dioxide nanoparticles.

22. The microgel according to claim 20 having 1% by weight zinc oxide nanoparticles.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded Jan 10, 2020
From: THE BANK OF NOVA SCOTIA
To: AVOCA LLC; HERCULES LLC; ISP INVESTMENTS LLC; PHARMACHEM LABORATORIES LLC
Reel/Frame 051557/0504 →
SECURITY AGREEMENT Recorded Jul 3, 2017
From: AVOCA, INC.; HERCULES LLC; ISP INVESTMENTS LLC; PHARMACHEM LABORATORIES, INC.
To: THE BANK OF NOVA SCOTIA, AS ADMINISTRATIVE AGENT
Reel/Frame 043084/0753 →
CONVERSION Recorded Jan 30, 2017
From: ISP INVESTMENTS INC.
To: ISP INVESTMENTS LLC
Reel/Frame 041556/0499 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2016
From: GILLECE, TIMOTHY W.; FOLTIS, LINDA C.; KOELMEL, DONALD F.; LUSCHEN, ANTHONY NEIL; BARRETT, CHRISTINE MARIE
To: ISP INVESTMENTS INC.
Reel/Frame 038079/0271 →
RELEASE OF PATENT SECURITY AGREEMENT Recorded Mar 18, 2013
From: THE BANK OF NOVA SCOTIA
To: ASHLAND LICENSING AND INTELLECTUAL PROPERTY LLC; AQUALON COMPANY; ISP INVESTMENTS INC.; HERCULES INCORPORATED
Reel/Frame 030025/0320 →
SECURITY AGREEMENT Recorded Sep 16, 2011
From: ASHLAND LICENSING AND INTELLECTUAL PROPERTY LLC; HERCULES INCORPORATED; AQUALON COMPANY; ISP INVESTMENT INC.
To: THE BANK OF NOVA SCOTIA, AS ADMINISTRATIVE AGENT
Reel/Frame 026918/0052 →