COMPARISON OF THE COMPOSITION AND STRUCTURE OF CERTAIN SUBSTANCES ISOLATED FROM THE PLANT PHLOMOIDES NUDA USING THE QUANTUM-CHEMICAL CALCULATION METHOD
Main Article Content
Abstract
In this scientific article the structures of the biologically active compounds isolated from the plant Phlomoides nuda growing in the Yangiqo'rg'on district of Namangan region, namely the molecules of ecdysterone, α-ecdysone, 8-O-acetylharpagide, lamiide and pinitol, were optimised by means of the quantum-chemical calculation program Gaussian 98 on the basis of the DFT/B3LYP/3-21G method. Their infrared (IR) vibrational spectra were compared and analysed both experimentally and theoretically. The results showed that the experimental spectra of the molecules correspond to a high degree with the theoretical spectral peaks. In particular, the accuracy of the vibrational modes relating to deformation and valence vibrations confirms the number of rings in the molecules, the presence of C-O, C-H, C-C bonds and the exactness of the structure. The results of this analysis provided the grounds for confirming the chemical structure of the isolated substances on the basis of the formulas presented above.
Article Details
Issue
Section

This work is licensed under a Creative Commons Attribution 4.0 International License.
How to Cite
References
Moench, H. (2023). Phlomoides Systematics and Phytochemistry. Journal of Medicinal Plants Research, 15(2), 115-130.
Gaussian 98 User’s Reference. Gaussian, Inc., Pittsburgh, 2001.
Ikromov, S., & Xudoyberganov, A. (2020). O‘zbekiston florasi. Toshkent: Fan.
Tursunov, M., & Valiev, A. (2019). Biological Activity of Plant-Derived Ecdysteroids. Uzbekistan Journal of Natural Sciences, 8(3), 50-56.
Zhang, L., et al. (2018). Phytochemical Analysis of Ecdysteroids from Plant Extracts. Phytochemistry, 145, 23-34.
Chen, Y., Wang, Z., & Li, H. (2017). Molecular Docking of Plant Ecdysteroids and Their Effects on Human Cells. Molecular Biology Reports, 44(5), 333-340.
Akhmedov, M. (2015). Infrared Spectroscopy in Plant Chemistry Studies. Tashkent: Science and Technology Publishing.
Kurbanov, A., & Mahmudov, H. (2014). Application of Quantum Chemistry in Plant Secondary Metabolites Analysis. Chemica Scripta, 7(1), 23-29.