CHELIDONIUM MAJUS L. O‘SIMLIGI XOMASHYOSINING MAKRO VA MIKROELEMENT TARKIBINI ICP-OES USULI YORDAMIDA ANIQLASH VA ULARNING FARMATSEVTIK AHAMIYATI
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Keywords

Chelidonium majus L.
makroelementlar
mikroelementlar
ICP-OES
elementar tarkib
biologik faollik.

How to Cite

CHELIDONIUM MAJUS L. O‘SIMLIGI XOMASHYOSINING MAKRO VA MIKROELEMENT TARKIBINI ICP-OES USULI YORDAMIDA ANIQLASH VA ULARNING FARMATSEVTIK AHAMIYATI. (2026). Qo‘qon DPI. Ilmiy Xabarlar Jurnali, 8(4), 395-401. https://doi.org/10.70728/a.series.tab.v08.i04.062

Abstract

Ushbu maqolada Chelidonium majus L. dorivor o‘simligi xomashyosining makro va mikroelement tarkibi zamonaviy ICP-OES usuli yordamida aniqlandi va baholandi. Tadqiqot natijalari o‘simlik tarkibida organizm uchun muhim bo‘lgan kalsiy, magniy, kaliy, temir, rux va mis kabi biogen elementlarning mavjudligini ko‘rsatdi. Aniqlangan elementlarning biologik roli hujayra metabolizmi, antioksidant himoya tizimi hamda nerv tizimi faoliyati bilan bog‘liq holda tahlil qilindi. Olingan ma’lumotlar Chelidonium majus L. asosida biologik faol oziq-ovqat qo‘shimchalari va fitopreparatlar ishlab chiqish uchun ilmiy asos bo‘lib xizmat qilishi mumkin.
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References

1. Maji A. K., Pratim Banerji P. B. Chelidonium majus L.(greater celandine): a review on its phytochemical and therapeutic perspectives. – 2015.

2. Pantano F. et al. Hepatotoxicity induced by greater celandine (Chelidonium majus L.): a review of the literature //European Review for Medical and Pharmacological Sciences. – 2017. – Т. 21. – №. 1 supplement. – С. 46-52.

3. Moro P. A. et al. Hepatitis from Greater celandine (Chelidonium majus L.): review of literature and report of a new case //Journal of ethnopharmacology. – 2009. – Т. 124. – №. 2. – С. 328-332.

4. Nile S. H. et al. Comparative analysis of metabolic variations, antioxidant potential, and cytotoxic effects in different parts of Chelidonium majus L //Food and Chemical Toxicology. – 2021. – Т. 156. – С. 112483.

5. Li X. L. et al. Alkaloids in Chelidonium majus L: A review of its phytochemistry, pharmacology and toxicology //Frontiers in Pharmacology. – 2024. – Т. 15. – С. 1440979.

6. IR A., Mo’minov M., Arzibayeva D. R. CHELIDONIUM MAJUS L. NING TARKIBI: MAKRO-VA MIKROELEMENTLAR, HAMDA POLIFENOLLARNING BIOLOGIK AHAMIYATI //Prospects for innovative technologies in science and education. – 2026. – Т. 3. – №. 1. – С. 9-11.

7. Petrović B. B. et al. Therapeutic potential of the active compounds of certain medicinal plants and fungi in the pharmacotherapy of cancer //Therapeutic Potential of Medicinal Plants. – Academic Press, 2026. – С. 3-40.

8. Hosseini M. et al. Land Uses Impacts on Soil Organic Carbon Dynamics: Isotopic Evidence From Stabilisation and Decomposition in Alluvial Soils //Soil Use and Management. – 2026. – Т. 42. – №. 1. – С. e70165.

9. Rák T., Ormai E., Horváth G. Phytomedicines for Mental Disorders in Hungary—Questionnaire and Phytochemical Analysis of Herbal OTC Products //Scientia Pharmaceutica. – 2026. – Т. 94. – №. 1. – С. 10.

10. Zhou R. et al. Chelerythrine alleviates inflammation and angiogenesis in a mouse rosacea model via suppressing the NF-κB/p38 MAPK/STAT3 pathways //Biochemistry and Cell Biology. – 2026. – Т. 104. – С. 1-12.