IP Library Granted Patent US 9,919,013
Granted Patent B2
US 9,919,013 · App. 14/891,060 · Granted Mar 20, 2018

Use of tall oil fatty acid

Inventors: Juhani Vuorenmaa (Hyvinkää, FI); Hannele Kettunen (Tervakoski, FI)
Assignee: Hankkija Oy
A61K36/15A23K20/158A23K50/10A23L33/115A61K31/19A61K31/20A61K36/13A23V2002/00Y02P60/56
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Quick Facts
Patent No.
US 9,919,013
App. No.
14/891,060
Granted
Mar 20, 2018
Kind
B2
Abstract

The present invention relates to use of a tall oil fatty acid in the modulation of microbial population of the animal digestive tract. The invention further relates to use of a feed supplement and a feed composition comprising tall oil fatty acid.

Claims (22)

1. A method of modulation of a microbial population of an animal digestive tract comprising:

(a) feeding tall oil fatty acid to the animal, wherein the tall oil fatty acid comprises 1-10% (w/w) resin acids, wherein the tall oil fatty acid is produced by distillation of crude tall oil to form distilled tall oil, and by further refinement of the distilled tall oil to form the tall oil fatty acid; and

(b) modulating the microbial population in the animal digestive tract.

2. The method of modulation according to claim 1 , wherein the tall oil fatty acid comprises 2-9% (w/w) resin acids.

3. The method of modulation according to claim 1 , wherein the tall oil fatty acid comprises 5-9% (w/w) resin acids.

4. The method of modulation according to claim 1 , wherein the tall oil fatty acid comprises 90-98% (w/w) fatty acids.

5. A method of modulation of a microbial population of an animal digestive tract comprising:

(a) feeding a feed supplement to the animal wherein the feed supplement comprises tall oil fatty acid, wherein the tall oil fatty acid comprises 1-10% (w/w) resin acids, wherein the tall oil fatty acid is produced by distillation of crude tall oil to form distilled tall oil, and by further refinement of the distilled tall oil to form the tall oil fatty acid; and

(b) modulating the microbial population in the animal digestive tract.

6. The method of modulation according to claim 5 , wherein the tall oil fatty acid comprises 2-9% (w/w) resin acids.

7. The method of modulation according claim 5 , wherein the tall oil fatty acid is absorbed into a carrier material.

8. A method of modulation of a microbial population of an animal digestive tract comprising:

(a) feeding a feed composition to the animal wherein the feed composition comprises a feed supplement comprising tall oil fatty acid, wherein the tall oil fatty acid comprises 1-10% (w/w) resin acids, wherein the tall oil fatty acid is produced by distillation of crude tall oil to form distilled tall oil, and by further refinement of the distilled tall oil to form the tall oil fatty acid; and

(b) modulating the microbial population in the animal digestive tract.

9. The method of modulation according to claim 8 , wherein the feed composition comprises the feed supplement in an amount of 0.00001-0.5% (w/w) of dry weight of total amount of the feed.

10. The method of modulation according to claim 8 wherein the feed composition comprises the feed supplement in an amount of 0.0005-0.1% (w/w) of dry weight of total amount of the feed.

11. The method of modulation according to claim 8 , wherein the tall oil fatty acid comprises 2-9% (w/w) resin acids.

12. The method of modulation according to claim 8 , wherein the tall oil fatty acid comprises 5-9% (w/w) resin acids.

13. The method of modulation according to claim 8 , wherein the modulation comprises a modulation of microbial metabolism from homofermentative toward heterofermentative metabolic route.

14. The method of modulation according to claim 1 , wherein the modulation comprises a modulation of microbial metabolism from homofermentative toward heterofermentative metabolic route.

15. The method of modulation according to claim 5 , wherein the tall oil fatty acid comprises 5-9% (w/w) resin acids.

16. The method of modulation according to claim 5 , wherein the modulation comprises a modulation of microbial metabolism from homofermentative toward heterofermentative metabolic route.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2025
From: HANKKIJA OY
To: AB VISTA FINLAND OY
Reel/Frame 070944/0986 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2024
From: HANKKIJA OY
To: AB VISTA FINLAND OY
Reel/Frame 067221/0069 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 13, 2015
From: VUORENMAA, JUHANI; KETTUNEN, HANNELE
To: HANKKIJA OY
Reel/Frame 037033/0918 →
Priority Claims (1)
FI 20135506 · May 14, 2013 · national
Continuity (1)
Related Publication 20160081368A1 · Mar 24, 2016