Phytochemistry2022,Vol.19510.DOI:10.1016/j.phytochem.2021.113054

Anti-inflammatory and cytotoxic specialised metabolites from the leaves of Glandularia x hybrida

Mohamed, Nesma M. Ahmed, Mai A. M. Khan, Shabana, I Fronczek, Frank R. Mohammed, Anber F. Ross, Samir A.
Phytochemistry2022,Vol.19510.DOI:10.1016/j.phytochem.2021.113054

Anti-inflammatory and cytotoxic specialised metabolites from the leaves of Glandularia x hybrida

Mohamed, Nesma M. 1Ahmed, Mai A. M. 1Khan, Shabana, I 2Fronczek, Frank R. 3Mohammed, Anber F. 1Ross, Samir A.2
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作者信息

  • 1. Assiut Univ
  • 2. Univ Mississippi
  • 3. Louisiana State Univ
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Abstract

In our ongoing effort to investigate active specialised metabolites from genus Glandularia, phytochemical studies on the ethanolic extract of Glandularia x hybrida (Groenl. & Rumpler) G.L. Nesom & Pruski leaves resulted in the isolation of three undescribed compounds, a dibenzylbutyrolactolic lignan and two echinocystic acid based triterpenoid saponins, in addition to two known compounds. Interestingly, this study reports isolation of chemosystematically valuable specialised metabolites for the first time from the genus under investigation. Additionally, the isolated metabolites were evaluated for their iNOS inhibition and cytotoxic activities using a combination of in silico and in vitro studies. The pharmacokinetics properties (ADMET) of some of the isolated compounds were determined using pkCSM-pharmacokinetics server. Molecular docking analysis showed that saponin compound possesses higher negative score (-9.59 kcal/mol) than the lignan compound (-6.56 kcal/ mol). The isolated compounds also showed iNOS inhibition activity with IC50 values ranging between 6.6 and 49.7 mu M and significant cytotoxic activity against a series of cell lines including SK-MEL, KB, BT-549, SK-OV-3, LLC-PK1 and VERO cells. Hence, this study reveals that specialised metabolites from G. hybrida plant are of significant anti-inflammatory and cytotoxicity potentials.

Key words

G landularia x hybrida/Verbenaceae/Triterpenoidal saponins/Lignans/X-ray crystallography/iNOS inhibition/Molecular docking/ABSOLUTE-CONFIGURATION/NITRIC-OXIDE/SAPONINS/GLYCOSIDES/VERBENACEAE/CONSTITUENTS/GRANDIFLORUM/INFLAMMATION/ENANTIOMERS/DERIVATIVES

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出版年

2022
Phytochemistry

Phytochemistry

CCR
ISSN:0031-9422
参考文献量40
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