Metabolomic and biochemometric profiling of Tecoma stans with mechanistic insights of its in vitro cytotoxic activity

Tecoma stans is an ornamental plant recognized for its diverse biological activities, including notable cytotoxic effects. This study integrates LC-MS/MS-guided biochemometric analysis with mechanistic cytotoxicity evaluation to prioritize metabolites potentially associated with the cytotoxic activity of T. stans leaves. The hydroalcoholic extract and its solvent fractions n-hexane (HEX), dichloromethane (DCM), and ethyl acetate (EAC) were assessed for in vitro cytotoxicity against human lung adenocarcinoma (A549) and ovarian carcinoma (SKOV-3) cell lines using the MTT assay. Comprehensive LC-MS/MS-based metabolomic profiling and biochemometric correlation analysis were performed on the DCM fraction. The major correlated compound, chrysoeriol (CRY), was isolated and, along with the DCM fraction, subjected to cell cycle analysis, apoptosis assays, scratch wound healing assays, and ELISA-based quantification of apoptotic and metastatic markers (caspase-3, p-STAT3, Bcl-2, and MMP-2) in SKOV-3 cells. The DCM fraction exhibited the highest potency, particularly against SKOV-3 cells (IC₅₀ = 18.50 µg/mL). Metabolomic profiling led to the annotation of 107 metabolites, where CRY, α-sulfoquinovosyl monoacylglyceride (α-SQMG), tecomanine, and hydroxyskytanthine were prioritized as metabolites potentially associated with cytotoxic activity. DCM induced pronounced sub-G₁ arrest (71.42%, P < 0.0005) and increased late apoptosis to 23.32%, whereas CRY elevated sub-G₁ accumulation to 48.02% and late apoptosis to 12.22% (P < 0.0005). Furthermore, both treatments markedly reduced scratch wound closure and modulated key signaling pathways through caspase-3 activation and suppression of p-STAT3, Bcl-2, and MMP-2. The CRY and DCM fraction of T. stans leaves exerted their cytotoxic effects against SKOV-3 cells through the induction of apoptosis, wound closure inhibition and modulation of key oncogenic proteins. This study provides the first biochemometric and mechanistic validation of T. stans leaves DCM fraction and CRY in SKOV-3 cells, highlighting the potential combined contribution of its phytochemical constituents.

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Journal
Scientific Reports
Published
2026-08-27
DOI
https://doi.org/10.1038/s41598-026-67317-z
Primary Topic
Bioactive Natural Diterpenoids Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Metabolomic and biochemometric profiling of Tecoma stans with mechanistic insights of its in vitro cytotoxic activity

Mohamed M. Elmazar, Muhammad A. Alsherbiny, Dalia A. Al‐Mahdy, Noha Swilam et al.
Scientific Reports
Bioactive Natural Diterpenoids Research
article

Metabolomic and biochemometric profiling of Tecoma stans with mechanistic insights of its in vitro cytotoxic activity

Mohamed M. Elmazar, Muhammad A. Alsherbiny, Dalia A. Al‐Mahdy, Noha Swilam, Meselhy R. Meselhy, Maha R. A. Abdollah, Ahmed Sekkien
article en

Abstract

Tecoma stans is an ornamental plant recognized for its diverse biological activities, including notable cytotoxic effects. This study integrates LC-MS/MS-guided biochemometric analysis with mechanistic cytotoxicity evaluation to prioritize metabolites potentially associated with the cytotoxic activity of T. stans leaves. The hydroalcoholic extract and its solvent fractions n-hexane (HEX), dichloromethane (DCM), and ethyl acetate (EAC) were assessed for in vitro cytotoxicity against human lung adenocarcinoma (A549) and ovarian carcinoma (SKOV-3) cell lines using the MTT assay. Comprehensive LC-MS/MS-based metabolomic profiling and biochemometric correlation analysis were performed on the DCM fraction. The major correlated compound, chrysoeriol (CRY), was isolated and, along with the DCM fraction, subjected to cell cycle analysis, apoptosis assays, scratch wound healing assays, and ELISA-based quantification of apoptotic and metastatic markers (caspase-3, p-STAT3, Bcl-2, and MMP-2) in SKOV-3 cells. The DCM fraction exhibited the highest potency, particularly against SKOV-3 cells (IC₅₀ = 18.50 µg/mL). Metabolomic profiling led to the annotation of 107 metabolites, where CRY, α-sulfoquinovosyl monoacylglyceride (α-SQMG), tecomanine, and hydroxyskytanthine were prioritized as metabolites potentially associated with cytotoxic activity. DCM induced pronounced sub-G₁ arrest (71.42%, P < 0.0005) and increased late apoptosis to 23.32%, whereas CRY elevated sub-G₁ accumulation to 48.02% and late apoptosis to 12.22% (P < 0.0005). Furthermore, both treatments markedly reduced scratch wound closure and modulated key signaling pathways through caspase-3 activation and suppression of p-STAT3, Bcl-2, and MMP-2. The CRY and DCM fraction of T. stans leaves exerted their cytotoxic effects against SKOV-3 cells through the induction of apoptosis, wound closure inhibition and modulation of key oncogenic proteins. This study provides the first biochemometric and mechanistic validation of T. stans leaves DCM fraction and CRY in SKOV-3 cells, highlighting the potential combined contribution of its phytochemical constituents.

Scientific ReportsVol. 16(1)
Cairo University (EG), British University in Egypt (EG), Victor Chang Cardiac Research Institute (AU), Modern University for Information and Technology (EG)
Science and Technology Development Fund, British University in Egypt
Life in Land
Openalex Percentile: Top 17%
Bioactive Natural Diterpenoids Research
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