СONTENT OF ALKALOIDS IN DIFFERENT ORGANS OF PEGANUM HARMALA L. DURING ONTOGENESIS

UDC 615.322:615.074

  • Dmitriy Semenovich Kruglov Novosibirsk State Medical University http://orcid.org/0000-0003-1904-7901 Email: kruglov_DS@mail.ru
  • Viktoriya Vladimirovna Velichko Novosibirsk State Medical University Email: velichkvik@rambler.ru
  • Aidana Talaibekovna Yusupbayeva Novosibirsk State Medical University Email: nupka20019915@gmail.com
Keywords: Peganum garmala, peganine, harmine, ratio of alkaloids, phases of ontogeny

Abstract

Peganum garmala contains in its composition quinazoline (L-peganine (vasicin), pegamine, peganol, deoxypeganine, peganidin, etc.) and β-carboline (harmine, harman, harmaline, harmalol, etc.) alkaloids, which also cause different pharmacological activity harmala preparations. The accumulation of alkaloids depends on the stage of ontogenesis and differs in the aboveground and underground parts of the plant. The aim of the work is to determine the possibility of using various plant organs for the isolation of individual alkaloids.

The study was conducted on the underground and aboveground organs of a plant collected on the territory and the Republic of Kyrgyzstan in the phases of vegetation, flowering and fruiting.

Using thin-layer chromatography and spectrophotometry, it was found that the alkaloid peganine predominates in the aerial part of the plant. In the roots in the phase of vegetation and flowering, harmine predominates, while in the fruiting phase it is absent and only peganine is recorded. Quantitative determination of the content of both alkaloids was carried out by measuring the optical density at wavelengths characteristic of the extremums of peganine (266 nm) and harmine (315 nm). As a result, it was found that the content of peganin in the aboveground organs of the common harmala does not depend on the stage of ontogenesis. At the same time, the content of alkaloids in harmala roots decreases in ontogeny with a simultaneous change in the ratio of harmine and peganine – harmine predominates in the vegetation and flowering stages, and in the fruiting stage, its content decreases to a trace level with a simultaneous increase in the content of peganine.

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Author Biographies

Dmitriy Semenovich Kruglov, Novosibirsk State Medical University

кандидат технических наук, доцент кафедры фармакогнозии и ботаники

Viktoriya Vladimirovna Velichko, Novosibirsk State Medical University

кандидат фармацевтических наук, заведующая кафедрой фармакогнозии и ботаники

Aidana Talaibekovna Yusupbayeva, Novosibirsk State Medical University

ассистент отдела маркетинга  АО «ПФК Обновление»

References

Kruglov D.S., Velichko V.V., Prokusheva D.L. Farmakognoziya alkaloidosoderzhashchego prirodnogo syr'ya. [Pharmacognosy of alkaloid-containing natural raw materials]. Novosibirsk, 2020, 230 p. (in Russ.).

Karomatov I.D. Traditsionnaya meditsina, 2014, no. 3(38), pp. 22–27. (in Russ.).

Kruglov D.S., Yusupbayeva A.T. Sibirskiy meditsinskiy vestnik, 2021, no. 3, pp. 63–66. DOI: 10.31549/2541-8289-2021-3-63-66. (in Russ.).

Majid A. Global Journal of Pure and Applied Chemistry Research, 2018, vol. 6(2), pp. 12–19.

Dumitrascu F., Georgescu F., Georgescu E., Caira M.R. Advances in Heterocyclic Chemistry. 2019, vol. 129, pp. 155–244. DOI: 10.1016/bs.aihch.2019.01.004.

Zhao T., Ding K., Zhang L., Cheng X.,Wang Ch., Wang Zh. Journal of Chemistry, 2013, vol. 5, pp. 1–6. DOI: 10.1155/2013/717232.

Petrov K.A., Kharlamova A.D., Nikol'skiy Ye.Ye. Geny & kletki, 2014, vol. 9, no. 3, pp. 160–167. (in Russ.).

Cavdar H., Senturk M., Gunev M. J. Enzvme Inhib. Med. Chem., 2019, vol. 34(1), pp. 429–437. DOI: 101Q8Q/14756366.2018.1543288.

Turmukhambetov A.Zh. Alkaloidy rasteniy Kazakhstana. Vydeleniye, khimicheskaya modifikatsiya i biologicheskaya ak-tivnost'. [Alkaloids of plants of Kazakhstan. Isolation, chemical modification and biological activity]. Karaganda, 2009, 169 p. (in Russ.).

Iranshahy M., Bazzaz F.Z., Haririzadeh G., Abootorabi B.Z., Mohamadi A.M., Khashyarmanesh Z. Avicenna J. Phy-tomed., 2019, vol. 9(6), pp. 530–537. DOI: 10.22038/AJP.2019.13382.

Nurmaganbetov Zh.S., Arystan A.L., Turmukhombetov I.Zh., Anayev A.A., Voronina T.A., Sariyev A.K., Adekenov S.M. Farmatsiya i farmakologiya, 2014, no. 6(7), pp. 96–98. DOI: 10.19163/2307-9266-2014-2-6(7)-96-98. (in Russ.).

Takasu K., Shimogama T., Saiin Ch., Kim H.-S., Wataya Yu., Ihara M. Bioorganic & Medicinal Chemistry Letters, 2004, vol. 14(7), pp. 1689–1692. DOI: 10.1016/j.bmd.2004.01.055.

Adekenov S.M., Kapitsa I.G., Voronina T.A., Anayev L.L., Zhanymkhanova Ya.Zh, Abaimov D.L., Sariyev L.Zh. Nervnyye bolezni, 2019, no. 3, pp. 38–44. DOI: 10.24411/2226-0757-2019-12124. (in Russ.).

Prot'ko N.N. Meditsinskiye novosti, 2016, no. 7, pp. 36–39. (in Russ.).

Gosudarstvennyy reyestr lekarstvennykh sredstv. [State register of medicines]. URL: https://grls.rosminzdrav.ru/default.aspx. (in Russ.).

Li Sh.-G., Wang K.-B., Gong Ch., Bao Yu, Qin N.-I., Li D.-H., Li Zh.-L., Bai Ji., Hua H.-M. Bioorganic & Medicinal Chemistry Letters, 2018, vol. 28(2), pp. 103–106. DOI: 10.1016/j.bmcl.2017.12.003.

Magerramov S.G. Izvestiya vysshikh uchebnykh zavedeniy. Povolzhskiy region. Yestestvennyye nauki. Biologiya, 2013, no. 2(2), pp. 64–68. (in Russ.).

Sreelekshmi U., Sarathchandra G., Vijayarani К., Preetha S.P. The Pharma Innovation Journal, 2021, vol. 10(1), pp. 171–173.

Velichko V.V., Kruglov D.S. Journal of Siberian Medical Sciences, 2021, no. 4, pp. 17–26. DOI: 10.31549/2542-1174-2021-4-17-26. (in Russ.).

Soni S., Anandjiwala Sh., Patel G., Rajani M. Indian Journal of Pharmaceutical Sciences, 2008, vol. 70(1), pp. 36–42. DOI: 10.4103/0250-474X40329.

Nafisi Sh., Panahyab A., Sadeghi G.B. Journal of Luminescence, 2012, vol. 132(9), pp. 2361–2366. DOI: 10.1016/j.jlumin.2012.03.075

Il'in V.A., Poznyak E.G. Lineynaya algebra. [Linear algebra]. Moscow, 2020, 280 p. (in Russ.).

Medvedev S.S. Fiziologiya rasteniy. [Physiology of plants]. St. Petersburg, 2013, 512 p. (in Russ.).

Yermolayeva I.L., Kornilov V.I., Chistyakova Ye.I. Zashchita rasteniy ot vrediteley. [Plant protection from pests]. Ufa, 2017, 148 p. (in Russ.).

Alkaloidy karbolinovyye // Spravochnik khimika [Carboline alkaloids // Chemist's Handbook]. URL: https://www.chem21.info/info/1259404/?. (in Russ.).

Arora R., Kapoor A., Gill N.S., Rana A.C. Int. Res. J. Pharmacy, 2011, vol. 2, no. 12, pp. 22–28.

Published
2023-03-13
How to Cite
1. Kruglov D. S., Velichko V. V., Yusupbayeva A. T. СONTENT OF ALKALOIDS IN DIFFERENT ORGANS OF PEGANUM HARMALA L. DURING ONTOGENESIS // chemistry of plant raw material, 2023. № 1. P. 157-164. URL: http://journal.asu.ru/cw/article/view/11525.
Section
Low-molecular weight compounds