Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs
Abstract Background The Omega‐3 Index is a test that measures the amount of the long‐chain omega‐3 polyunsaturated fatty acids (n‐3 PUFAs), eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) in red blood cell membranes, which is expressed as a percentage of all fatty acids. However, alpha‐li...
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doaj-c831ec5cfc354585b5f0ef4d62525f822021-04-07T12:37:26ZengWileyVeterinary Medicine and Science2053-10952021-03-017237037710.1002/vms3.369Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogsTonje E. Dominguez0Kiranpreet Kaur1Lena Burri2Aker BioMarine Antarctic AS Lysaker NorwayAker BioMarine Antarctic AS Lysaker NorwayAker BioMarine Antarctic AS Lysaker NorwayAbstract Background The Omega‐3 Index is a test that measures the amount of the long‐chain omega‐3 polyunsaturated fatty acids (n‐3 PUFAs), eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) in red blood cell membranes, which is expressed as a percentage of all fatty acids. However, alpha‐linolenic acid (ALA) from flaxseed oil, which is a short‐chain n‐3 PUFA, is often promoted in pet feed as a n‐3 source, implicitly assuming it is an effective precursor of EPA and DHA. Objective This study was aimed to compare the effect of supplementation with a plant‐based short‐chain n‐3 PUFA source (flaxseed oil, FSO) with a marine long‐chain n‐3 PUFA source (astaxanthin krill oil, AKO) to increase the Omega‐3 Index in dogs. Methods Ten adult Alaskan Huskies of both genders were supplemented daily with 1,155 mg of EPA/DHA from AKO, whereas another 10 dogs received 1,068 mg ALA from flaxseed oil for 6 weeks. Fatty acid and Omega‐3 Index measurements of the two groups were taken after 0, 3 and 6 weeks for comparison. Results The EPA and DHA concentrations increased significantly only in the dogs fed with AKO resulting in a significant increase in mean Omega‐3 Index, from 1.68% at baseline to 2.7% after 6 weeks of supplementation (p < .0001). On the contrary, both EPA and DHA concentrations decreased significantly in the dogs fed with FSO, which led to a significant decrease in mean Omega‐3 Index from 1.6% at baseline to 0.96% at study end (p < .0001). Conclusions The results showed that supplementation of AKO from Antarctic krill led to a significant increase in the Omega‐3 Index in comparison to FSO in dogs. This suggests that preformed marine EPA and DHA sources are needed in dog feeds, as the dietary requirements proposed by feed industry organizations are not met with conversion from short‐chain n‐3 fatty acids.https://doi.org/10.1002/vms3.369Alpha‐linolenic acidastaxanthin krill oilflaxseed oilOmega‐3 Indexomega‐3 long‐chain polyunsaturated fatty acids |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Tonje E. Dominguez Kiranpreet Kaur Lena Burri |
spellingShingle |
Tonje E. Dominguez Kiranpreet Kaur Lena Burri Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs Veterinary Medicine and Science Alpha‐linolenic acid astaxanthin krill oil flaxseed oil Omega‐3 Index omega‐3 long‐chain polyunsaturated fatty acids |
author_facet |
Tonje E. Dominguez Kiranpreet Kaur Lena Burri |
author_sort |
Tonje E. Dominguez |
title |
Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs |
title_short |
Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs |
title_full |
Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs |
title_fullStr |
Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs |
title_full_unstemmed |
Enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs |
title_sort |
enhanced omega‐3 index after long‐ versus short‐chain omega‐3 fatty acid supplementation in dogs |
publisher |
Wiley |
series |
Veterinary Medicine and Science |
issn |
2053-1095 |
publishDate |
2021-03-01 |
description |
Abstract Background The Omega‐3 Index is a test that measures the amount of the long‐chain omega‐3 polyunsaturated fatty acids (n‐3 PUFAs), eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) in red blood cell membranes, which is expressed as a percentage of all fatty acids. However, alpha‐linolenic acid (ALA) from flaxseed oil, which is a short‐chain n‐3 PUFA, is often promoted in pet feed as a n‐3 source, implicitly assuming it is an effective precursor of EPA and DHA. Objective This study was aimed to compare the effect of supplementation with a plant‐based short‐chain n‐3 PUFA source (flaxseed oil, FSO) with a marine long‐chain n‐3 PUFA source (astaxanthin krill oil, AKO) to increase the Omega‐3 Index in dogs. Methods Ten adult Alaskan Huskies of both genders were supplemented daily with 1,155 mg of EPA/DHA from AKO, whereas another 10 dogs received 1,068 mg ALA from flaxseed oil for 6 weeks. Fatty acid and Omega‐3 Index measurements of the two groups were taken after 0, 3 and 6 weeks for comparison. Results The EPA and DHA concentrations increased significantly only in the dogs fed with AKO resulting in a significant increase in mean Omega‐3 Index, from 1.68% at baseline to 2.7% after 6 weeks of supplementation (p < .0001). On the contrary, both EPA and DHA concentrations decreased significantly in the dogs fed with FSO, which led to a significant decrease in mean Omega‐3 Index from 1.6% at baseline to 0.96% at study end (p < .0001). Conclusions The results showed that supplementation of AKO from Antarctic krill led to a significant increase in the Omega‐3 Index in comparison to FSO in dogs. This suggests that preformed marine EPA and DHA sources are needed in dog feeds, as the dietary requirements proposed by feed industry organizations are not met with conversion from short‐chain n‐3 fatty acids. |
topic |
Alpha‐linolenic acid astaxanthin krill oil flaxseed oil Omega‐3 Index omega‐3 long‐chain polyunsaturated fatty acids |
url |
https://doi.org/10.1002/vms3.369 |
work_keys_str_mv |
AT tonjeedominguez enhancedomega3indexafterlongversusshortchainomega3fattyacidsupplementationindogs AT kiranpreetkaur enhancedomega3indexafterlongversusshortchainomega3fattyacidsupplementationindogs AT lenaburri enhancedomega3indexafterlongversusshortchainomega3fattyacidsupplementationindogs |
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