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Patrícia de Oliveira Figueiredo

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Open access Sep 2026

Comprehensive phytochemical study of Galianthe thalictroides: isolation of three new compounds, structural revision of β-carbolines, and evaluation of cytotoxic and anti-wnt activities

The medicinal plant G. thalictroides (K. Schum.) E. L. Cabral has been traditionally used in Midwestern Brazil for cancer treatment and prevention. Previous studies demonstrated that the chloroform fraction of its roots exhibits significant cytotoxic activity against cancer cell lines. Phytochemical investigation of this fraction led to the isolation of four cytotoxic compounds, including two β-carboline alkaloids and two cyclopeptides, supporting the traditional use of this species. However, several minor metabolites detected in this active fraction were not obtained in sufficient quantities for complete structural elucidation or biological evaluation. In this context, the present study aimed to expand the chemical characterization of Galianthe thalictroides , with a particular focus on previously unresolved metabolites. Additionally, the study sought to explore other extracts and preparations, including the traditional decoction, to provide a more comprehensive understanding of the phytochemical profile and its potential biological relevance. The roots of G. thalictroides were extracted with ethanol and a traditional water decoction was prepared in parallel. The ethanolic extract was subjected to liquid/liquid partitioning with hexane, chloroform, and ethyl acetate. The extracts, fractions, and traditional decoction were analyzed by ultra-high-performance liquid chromatography coupled with high-resolution mass spectrometry (UHPLC-HRMS/MS) to establish a comprehensive metabolite profile and generate a molecular networking (MN). The chloroform fraction was purified using medium-pressure liquid chromatography (MPLC-UV) followed by semi-preparative HPLC. Structural characterization of the isolated compounds was achieved through UV, Electronic Circular Dichroism, Nuclear Magnetic Resonance, and High-Resolution Mass Spectrometry data. The chemical shifts and coupling constants of β-carboline derivatives were calculated using the CT web application, which performs a complete Quantum Mechanical Spectral Analysis. Finally, the isolated compounds were evaluated for activity in a dose-dependent manner using BT-20 triple-negative breast cancer cells. This was conducted to determine their cytotoxic potencies and specific Wnt-inhibitory activities via a TopFlash reporter assay. Using this approach, 26 compounds were isolated from the chloroform fraction and fully characterized. Notably, this study led to the discovery of two new cyclopeptides and one new β-carboline alkaloid, which represent the most significant and original contributions of this work. In addition, the structures of two previously reported β-carboline alkaloids from this species were revised. Molecular networking–guided MS profiling of the extracts, fractions, and traditional decoction enabled the annotation of 13 additional metabolites, thereby expanding the known chemical diversity of G. thalictroides . Biological evaluation confirmed the cytotoxic activity of known compounds and revealed new active analogues. Bouvardins exhibited strong cytotoxicity (IC 50 0.25–14.00 µM), while anthraquinones and β-carboline alkaloids showed moderate activity (IC 50 23–110 μM and 65–193 μM, respectively). Mechanistic studies revealed that β-carboline derivative 24 selectively inhibited the Wnt signaling pathway (IC 50 ≈ 40 µM), whereas its analogue ( 25 ) was inactive. Overall, this study significantly advances the chemical and biological understanding of G. thalictroides by integrating compound isolation, structural characterization, and biological evaluation. The discovery of novel bioactive compounds, together with evidence of pathway-specific effects, highlights the plant’s potential as a source of structurally diverse and pharmacologically relevant metabolites for anticancer research.

Patrícia de Oliveira Figueiredo, O. Kirchhoffer, L. Marcourt et al. · 0 citations
Open access Sep 2026

Adjuvant Antibacterial Effects of Mouriri Elliptica Against Clinical Multidrug Resistant Gram‐Negative Bacterial Strains

ABSTRACT Bacterial resistance to antibiotics represents a critical global health challenge, demanding urgent alternative strategies to manage infections caused by multidrug‐resistant (MDR) pathogens such as Acinetobacter baumannii, Staphylococcus aureus, Escherichia coli, and Klebsiella pneumoniae. A promising approach to address this problem involves the use of combination therapies, in which plant‐derived natural products represent an important reservoir of bioactive compounds with the potential to act as effective adjuvants, restoring or enhancing antibiotic efficacy. In this study, the ethanolic extract of Mouriri elliptica (EME) leaves was investigated for its antimicrobial and synergistic potential. EME showed moderate inhibitory activity against both standard and MDR strains, with the most significant effect against A. baumannii (MIC 78.1–312.5 µg/mL). Synergistic interactions were observed with conventional antibiotics, particularly ciprofloxacin against K. pneumoniae, reducing MIC values up to fifteen‐fold, and with ampicillin against E. coli and S. aureus. The extract also inhibited biofilm formation, with 68% inhibition for E. coli at 500 µg/mL and 72.04% for S. aureus at 250 µg/mL, with atomic force microscopy images corroborating these findings. LC‐MS profiling identified 41 compounds, including chlorogenic acid derivatives, flavonoids, ellagic acid derivatives, and triterpenes. Acute toxicity evaluation in mice at 2000 mg/kg revealed no adverse effects. Collectively, these findings support the potential of M. elliptica as a natural antibacterial adjuvant for enhancing the effectiveness of selected antibiotics against MDR pathogens, warranting further chemical, mechanistic, and in vivo investigation.

T. V. Freire, Ana Carolina de Freitas Marques, Valéria dos Santos Gonçalves et al. · 0 citations

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