Literature DB >> 31920108

Verbascoside, synthetic derivatives and other glycosides from Argentinian native plant species as potential antitumoral agents.

Hugo A Garro1,2, Ezequiel Bruna-Haupt1, Valeria Cianchino1,3, Florencia Malizia2, Silvina Favier1,3, Mauricio Menacho-Márquez2, Diego Cifuente1, Claudio O Fernández2, Carlos R Pungitore1.   

Abstract

A phytochemical study was performed on three native plant species from the central-western zone of Argentina: Buddleja cordobensis Grisebach, Baccharis salicina Torr. & A. Gray and Nepeta cataria L. We could obtain verbascoside (1) from B. cordobensis. From N. cataria, we could obtain 1, 5, 9-epi-deoxyloganic acid (2) L. Finally, we could isolate 2-β-(L-rhamnopyranosyl)-3-angeloyloxy-15-acetyloxy-7,13(14)-E-dien-ent-labdane (3) and 2-β-(L-rhamnopyranosyl)-3-α-angeloyloxy-15-hydroxy-7,13(14)-E-dien-ent-labdane (4) from B. salicina. Moreover, three derivatives from 1, and one semi-synthetic derivative from 2, were prepared. PCR reaction was used to analyse the activity against DNA polymerase and cell culture to determine cytotoxicity and antitumoral activity. Verbascoside (1) was strongly active in the nanomolar scale (IC50 = 356 nM) against DNA polymerization. Moreover, verbascoside was also strongly active in the nanomolar scale against human melanoma cell line (IC50 = 256 nM) and human colorectal cell line (IC50 = 320 nM). Furthermore, derivatives 6 and 7 were cytotoxic against both cancer cell lines.

Entities:  

Keywords:  Antitumoral agents; Cancer cell lines; DNA polymerase; Glycosides; Natural Products

Year:  2020        PMID: 31920108     DOI: 10.1080/14786419.2019.1710701

Source DB:  PubMed          Journal:  Nat Prod Res        ISSN: 1478-6419            Impact factor:   2.861


  2 in total

1.  The Anti-Tumor Efficacy of Verbascoside on Ovarian Cancer via Facilitating CCN1-AKT/NF-κB Pathway-Mediated M1 Macrophage Polarization.

Authors:  Yu Ren; Jinying He; Wenhua Zhao; Yuzhen Ma
Journal:  Front Oncol       Date:  2022-06-17       Impact factor: 5.738

2.  Formulation of a Phenol-Rich Extract from Unripe Olives (Olea europaea L.) in Microemulsion to Improve Its Solubility and Intestinal Permeability.

Authors:  Lorenzo Cecchi; Vieri Piazzini; Mario D'Ambrosio; Cristina Luceri; Federica Rocco; Marzia Innocenti; Giulia Vanti; Nadia Mulinacci; Maria Camilla Bergonzi
Journal:  Molecules       Date:  2020-07-13       Impact factor: 4.411

  2 in total

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