Pyrrolizidine alkaloids and toxic microelements in the above-ground parts of Nonea rossica (Boraginaceae)

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Abstract

Nonea rossica Steven – a perennial herbaceous plant of the Boraginaceae family and herbal drug preparations obtained from it are of interest as they exhibit indirect anticoagulant properties, antimicrobial and antifungal activity. At the same time, it is known that Boraginaceae species contain pyrrolizidine alkaloids that have a hepatotoxic effect, which makes it difficult to use preparations made from these plants. Along with alkaloids, the toxicity of herbal preparations is also determined by toxic trace elements. The objective of the research was to study the toxic components in the above-ground parts of N. rossica. The composition and content of alkaloids were determined by HPLC. Quantitative determination of trace element content was carried out using inductively coupled plasma mass spectrometry. The analyses determined the presence of pyrrolizidine enantiomers intermedine and lycopsamine and their derivatives; their total content in plant raw materials was less than 20000 μg/kg. The content of such toxic elements as As, Cd, Pb, Hg, Be, Sr, Sb, Tl, and U does not exceed legally permissible concentrations.

About the authors

V. V. Velichko

Novosibirsk State Medical University

Author for correspondence.
Email: velichkvik@rambler.ru
Russian Federation, Novosibirsk

D. S. Kruglov

Novosibirsk State Medical University

Email: velichkvik@rambler.ru
Russian Federation, Novosibirsk

D. N. Olennikov

Institute of General and Experimental Biology SB RAS

Email: velichkvik@rambler.ru
Russian Federation, Ulan-Ude

K. I. Ershov

Novosibirsk State Medical University

Email: velichkvik@rambler.ru
Russian Federation, Novosibirsk

M. E. Kartashova

Novosibirsk State Medical University

Email: velichkvik@rambler.ru
Russian Federation, Novosibirsk

References

  1. Dolganova O. M., Velichko V. V., Kartashova M. E., Ershov K. I., Kruglov D. S. 2023. Anticoagulant activity of Nonea rossica Steven herb. — Journal of Siberian Medical Sciences. 7(4): 68–76. https://doi.org/10.31549/2542-1174-2023-7-4-68-76 (In Russian)
  2. Velichko V. V., Kartashova M. E., Kucherova S. D., Kruglov D. S., Burova L. G., Evstropov A. N. 2023. Phytochemical characteristics and antimicrobial effects of Nonea rossica (Boraginaceae) extracts. — Rastitelnye Resursy. 59(3): 297–305. https://doi.org/10.31857/S0033994623030068 (In Russian)
  3. El-Shazly A., Wink M. 2014. Diversity of pyrrolizidine alkaloids in the boraginaceae structures, distribution, and biological properties. — Diversity. 6(2): 188–282. https://doi.org/10.3390/d6020188
  4. Cooper R. A., Huxtable R. J. 1999. The relationship between reactivity of metabolites of pyrrolizidine alkaloids and extrahepatic toxicity. — Proc. West Pharmacol. Soc. 42: 13–16.
  5. [GPM.1.5.3.0009 Determination of the content of heavy metals and arsenic in medicinal plant raw materials and herbal medicinal products]. 2023. — In: [State Pharmacopoeia of the Russian Federation, XV edition]. Moscow. https://pharmacopoeia.regmed.ru/pharmacopoeia/izdanie-15/1/1-5/1-5-1/opredelenie-soderzhaniya-tyazhyelykh-metallov-i-myshyaka-v-lekarstvennom-rastitelnom-syre-i-lekarstv/ (In Russian)
  6. Rebrov B. G., Gromova O .A. 2008. [Vitamins, macro- and microelements]. Moscow. 960 p. (In Russian)
  7. Kashchenko N. I., Olennikov D. N., Chirikova N. K. 2023. Phenolic compounds and pyrrolizidine alkaloids of two north bluebells: Mertensia stylosa and Mertensia serrulate. — Applied Sciences. 13(5): 3266. https://doi.org/10.3390/app13053266
  8. Nikitin V. I. 2017. [Primary statistical processing of experimental data]. Samara. 80 p. (In Russian)
  9. Belenky M. L. 1963. [Elements of quantitative evaluation of pharmacological effect]. Moscow, Leningrad. 151 p. (In Russian)
  10. [SanPiN 1.2.3685-21 "Hygienic standards and requirements for ensuring safety and (or) harmlessness to humans from environmental factors”]. https://docs.cntd.ru/document/573500115 (In Russian)
  11. Nikonov T. G., Manuilov B. M. 2005. [Fundamentals of modern phytotherapy]. Moscow. 520 p. (In Russian)
  12. Wang Z., Qiao L., Zheng Q., Han H., Li Z., Zhang X., Chen H. 2022. Combined hepatotoxicity and toxicity mechanism of intermedine and lycopsamine. — Toxins. 14(9): 633. https://doi.org/10.3390/toxins14090633
  13. Wang Z., Han H., Wang C., Zheng Q., Chen H., Zhang X., Hou R. 2021. Hepatotoxicity of pyrrolizidine alkaloid compound intermedine: comparison with other pyrrolizidine alkaloids and its toxicological mechanism. — Toxins. 13(12): 849. https://doi.org/10.3390/toxins13120849

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