Terpenoids from Leaves of Guarea macrophylla Display In Vitro Cytotoxic Activity and Induce Apoptosis In Melanoma Cells

Author:

Conserva Geanne12,Girola Natalia3,Figueiredo Carlos34,Azevedo Ricardo5,Mousdell Sasha4,Sartorelli Patricia1,Soares Marisi6,Antar Guilherme7,Lago João2

Affiliation:

1. Instituto de Ciências Ambientais, Químicas e Farmacêuticas, Universidade Federal de São Paulo, Brazil

2. Centro de Ciências Naturais e Humanas, Universidade Federal do ABC, Santo Andre, Brazil

3. Departamento de Microbiologia, Imunologia e Parasitologia,Universidade Federal de São Paulo, Brazil

4. Department of Molecular and Clinical Cancer Medicine, University of Liverpool, United Kingdom

5. Laboratório de Imunologia de Tumores, Instituto de Ciências Biomédicas, Universidade de São Paulo, Brazil

6. Instituto de Química, Universidade Federal de Alfenas, Brazil

7. Departamento de Botânica, Instituto de Biociências, Universidade de São Paulo, Brazil

Abstract

Abstract Guarea macrophylla is a Brazilian plant species that has been used in folk medicine to treat a range of diseases. Our ongoing work focuses on the discovery of new bioactive natural products derived from Brazilian flora. The current study describes the identification of cytotoxic compounds from the EtOH extract of leaves from G. macrophylla using bioactivity-guided fractionation. This approach resulted in the isolation and characterization of four compounds: cycloart-23E-ene-3β,25-diol (1), (23S*,24S*)-dihydroxycicloart-25-en-3-one (2), isopimara-7,15-diene-2α,3β-diol (3), and isopimara-7,15-dien-3β-ol (4), in which 2 and 3 are identified as new derivatives. In vitro assays were conducted to evaluate the cytotoxic activity of compounds 1–4 against a panel of cancer cell lines and to determine the possible mechanism(s) related to the activity of the compounds on B16F10Nex2 cells. The most active compound 1 induced cytotoxic effects on tumor cells, with IC50 values of 18.3, 52.1, and 58.9 µM against HL-60, HeLa, and B16F10-Nex2 tumor cells, respectively. Furthermore, it was observed in melanoma cells that compound 1 induced several specific apoptotic hallmarks, such as morphological changes in the cell shape structure, nuclear DNA condensation, specific chromatin fragmentation, and disruption in the mitochondrial membrane potential, which are related to the intrinsic apoptotic pathway.

Publisher

Georg Thieme Verlag KG

Subject

Organic Chemistry,Complementary and alternative medicine,Drug Discovery,Pharmaceutical Science,Pharmacology,Molecular Medicine,Analytical Chemistry

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