Preview

Izvestiya TINRO

Advanced search

Comparative assessment for efficiency of isolation of arachidonic acid (20:4n-6) from various sources

https://doi.org/10.26428/1606-9919-2016-186-223-230

Abstract

Methods of arachidonic acid (AA) isolation from animal and vegetal natural sources are considered. Traditional raw material as the lipids of beef liver and alternative source as the red alga Gracilaria vermiculophylla are tested. The AA was isolated by a sequence of known techniques for concentration of polyunsaturated fatty acids: sedimentation of saturated fatty acids in the form of their lithium salts, iodo-lactonization, and high performance liquid chromatography. All these techniques were applied for isolation of AA from the beef liver lipids, where the AA content did not exceed 7.7 % of total lipids, and the yield of AA with purity of 98.76 % was 50.8 %. The AA content in the algae lipids was significantly higher (> 35 %), while the amount of n-3 polyunsaturated fatty acids was insignificant, so two techniques only were applied (sedimentation of lithium salts and liquid chromatography), and the yield of AA with purity of 97.60 % was 68.3 %. Thus, high-purity arachidonic acid could be isolated from the algae G. vermiculophylla using simple and reproducible procedure. Taking into account the high yield of AA, this method is economically feasible and is proposed for biochemical and medical researches.

About the Authors

Ruslan M. Sultanov
Институт биологии моря им. А.В. Жирмунского ДВО РАН
Russian Federation


Ekatherina V. Ermolenko
Институт биологии моря им. А.В. Жирмунского ДВО РАН
Russian Federation


Nickolay A. Latyshev
Институт биологии моря им. А.В. Жирмунского ДВО РАН
Russian Federation


Yury G. Blinov
Тихоокеанский научно-исследовательский рыбохозяйственный центр
Russian Federation


Sergey P. Kasyanov
Институт биологии моря им. А.В. Жирмунского ДВО РАН; Дальневосточный федеральный университет
Russian Federation


References

1. Игнатова Т.А., Подкорытова А.В., Чимиров Ю.И. и др. Технология получения агара из Gracilariopsis и Gracilaria: сравнительная характеристика способов очистки агаровых экстрактов // Хранение и переработка сельхозсырья. - 2011. - № 6. - C. 39-44.

2. Имбс А.Б., Латышев Н.А., Светашев В.И. и др. Распределение полиненасыщенных жирных кислот в красных водорослях рода Gracilaria - перспективном источнике простагландинов // Биол. моря. - 2012. - Т. 38, № 4. - С. 318-324.

3. Козьменко В.Б., Колмаков П.В. Биология и жизненная стратегия Gracilaria verrucosa в лагунах Хасанского района Приморского края // Науч. тр. Дальрыбвтуза. - 2012. - Т. 27. - С. 14-24.

4. Лапшина А.А., Иванова Е.Г., Титлянов Э.А., Усов А.И. Агар из приморской неприкрепленной водоросли Gracilaria verrucosa (Huds.) Papenf. // Биоорган. химия. - 1991. - Т. 17, № 11. - С. 1494-1499.

5. Сергеева М.Г., Варфоломеева А.Т. Каскад арахидоновой кислоты : моногр. - М. : Нар. образ., 2006. - 256 с.

6. Хотимченко С.В. Липиды морских водорослей-макрофитов и трав: структура, распределение, анализ : моногр. - Владивосток : Дальнаука, 2003. - 233 с.

7. Calder P.C. Polyunsaturated fatty acids, Infammation, and Immunity // Lipids. - 2001. - Vol. 36. - P. 1007-1024.

8. Carreau J.P., Dubacq J.P. Adaptation of a macro-scale method to the micro-scale for fatty acid methyl transesterification of biological lipid extracts // J. Chromatogr. - 1978. - Vol. 151, № 3. - P. 384-390.

9. Christie W.W. Lipid Analysis: Isolation, separation, identification and structural analysis of lipids. - Bridgwater (UK) : The oily Press, 2003. - 416 p.

10. Cohen Z. The production potential of eicosapentaenoic and arachidonic acids by the red alga Porphyridium cruentum // JAOCS. - 1990. - Vol. 67, № 12. - P. 916-920.

11. Corey E.J., Wright S.W. A simple process for the purification of arachidonic acid // Tetrahedron letters. - 1984. - Vol. 25, № 26. - P. 2729-2730.

12. Gaiday N.V., Imbs A.B., Kuklev D.V., Latyshev N.A. Separation of natural polyunsaturated fatty-acids by means of iodolactonization // JAOCS. - 1991. - Vol. 68, № 4. - Р. 230-233.

13. Giménez A.G., González M.J.I., Medina A.R. et al. Downstream processing and purification of eicosapentaenoic (20:5n-3) and arachidonic acids (20:4n-6) from the microalga Porphyridium cruentum // Bioseparation. - 1998. - Vol. 7. - P. 89-99.

14. Hildich T.P. The Chemical constitution of natural fats. - L. : Chapman&Hall Ltd., 1949. - 554 p.

15. Shahidi F., Wanasundara U.N. Omega-3 fatty acid concentrates: nutritional aspects and production technologies // Trends Food Sci. Technol. - 1998. - Vol. 9. - P. 230-240.

16. Sprecher H. Metabolism of highly unsaturated n-3 and n-6 fatty acids // BBA. - 2000. - Vol. 1486. - P. 219-231.


Review

For citations:


Sultanov R.M., Ermolenko E.V., Latyshev N.A., Blinov Yu.G., Kasyanov S.P. Comparative assessment for efficiency of isolation of arachidonic acid (20:4n-6) from various sources. Izvestiya TINRO. 2016;186(3):223-230. (In Russ.) https://doi.org/10.26428/1606-9919-2016-186-223-230

Views: 429


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


ISSN 1606-9919 (Print)
ISSN 2658-5510 (Online)