LIPIDS OF THE FRUIT OF PHYTOLACCA AMERICANA L. COMMON IN GEORGIA
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Keywords

fatty acids
phospholipids
carotenoids

How to Cite

Turabelidze, D., Sulakvelidze, T., Malania, M., & Kikalishvili, B. (2023). LIPIDS OF THE FRUIT OF PHYTOLACCA AMERICANA L. COMMON IN GEORGIA. Georgian Scientists, 5(2), 1–5. https://doi.org/10.52340/gs.2023.05.02.01

Abstract

      The content of lipids and associated biologically active compounds in fruits of young pokeweed (Phytolacca americana L.) commonly growing in West Georgia was analyzed. The sum of neutral and polar lipids (9% and 15%) was obtained from the object of study. Their main classes, and some physico-chemical characteristics were determined; saturated, unsaturated and polyunsaturated fatty acids were identified qualitatively and quantitatively by the gas chromatography, and high percentages of some of them were identified: 9,12-octadecadiene: 30.99%, 9,12,15-octadecatriene: 31.56%, and hexadecane: 15.56%. Phospholipids were determined qualitatively and quantitatively in the polar sum with a total content of 0.1%. The content of carotenoids in the product above is 33.0 mg%. The presence of amino acids in the fruits has been proved. Vegetable oil obtained from the fruits of Phytolacca americana L. is rich in biologically active compounds, what, in the future gives an opportunity to produce inexpensive and efficient therapeutic and preventive agents using local raw materials, which may find practical use in pharmacy, medicine and cosmetology.

https://doi.org/10.52340/gs.2023.05.02.01
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References

Revaz Gagnidze. Vascular plants of Georgia a nomenclatural cheklist.2005.p.50.

Advances in lipid methodology-Two,pp.69-111(1993) (Ed.www.Christie, olily

press, du ndee)

B Kikalishvili*, Ts Sulakvelidze, M Getia, M Malania, D Turabelid. Study of lipids and some biologically active compounds of Sambucus ebulus L. spread in Georgia.Journal of Pharmacognosy and Phytochemistry.2022; Vol. 11(4) 33-35, E-ISSN: 2278-4136, P-ISSN: 2349-8234, Impact Factor: RJIF 5.52 http://www.phytojournal.com/

Никонов Г.К., Мануилов Б.М. Основы современной фармакотерапии. М.Медицина. 2005.стр.107.

Darrin L. Smith. Mass Spectrometry Applications in Forensic Science, Encyclopedia of Analytical Chemistry, John Wiley & Sons Ltd, New York City. 2010. https://doi.org/10.1002/9780470027318.a9121

Sukhija PS, Palmquist D. Rapid method for determination of total fatty acid content and composition of feedstuffs and feces. J Agric. Food Chem. 1988; 36:1202-1206.

Sponngord R.Y. Sun M. Enhancement of an analytical method for the determination

oils in viecine adsorbed formualtions. J. Parrm. / biomed.Anal. 2008; 52;554-564

T. Giligashvili1, G. Moshiashvili1, B. Kikalishvili1*. Phytochemical study of lipids of

Prunus domestica L. seeds cultivated in Georgia. Journal of Medicinal Plants Studies 2023;

(2): 01-03. DOI: https://doi.org/10.22271/plants.2023.v11.i2a.1531

Russian Pharmakopeia XIII 1;2;3.0020.15.1.2.4 G method(quantitative determination of phosphorus with an Eiconogenin

British Pharmacopeia volume V; London: The Stationery Office. 2017. pp.202-203.

Raju A.B.,Venugopal Y. Phitolacca americana: a review. Int.Journ.of research in Pharmaceutical and Biomed. Science. 2011.,2(3). 942-946.

А.С.Алексеева, И.А.Самылина, Н.В.Бобкова. Растения рода лаконос, произрастающие в России: химический состав, приминение, стандартизация. Фармация. N4. Стр.52-56.

Kotova E.E., Kotov S.A., Gontova T.M., Kotov A.G. Study of qualitative and quantitative content of amino acids in pumpkin seeds for further standardization of the herbal drug. Eur. Pharm. J. 2019, 67(1), 27-32. DOI: 10.2478/afpuc-2020-0001

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