1. Academic Validation
  2. Potential anti-herpes and cytotoxic action of novel semisynthetic digitoxigenin-derivatives

Potential anti-herpes and cytotoxic action of novel semisynthetic digitoxigenin-derivatives

  • Eur J Med Chem. 2019 Apr 1:167:546-561. doi: 10.1016/j.ejmech.2019.01.076.
Laurita Boff 1 Jennifer Munkert 2 Flaviano Melo Ottoni 3 Naira Fernanda Zanchett Schneider 1 Gabriela Silva Ramos 3 Wolfgang Kreis 2 Saulo Fernandes de Andrade 4 José Dias de Souza Filho 5 Fernão Castro Braga 3 Ricardo José Alves 3 Rodrigo Maia de Pádua 3 Cláudia Maria Oliveira Simões 6
Affiliations

Affiliations

  • 1 Laboratório de Virologia Aplicada, Programa de Pós-Graduação em Farmácia, Universidade Federal de Santa Catarina (UFSC), Florianópolis, SC, 88040-970, Brazil.
  • 2 Friedrich-Alexander-Universität, Lehrstuhl für Pharmazeutische Biologie, Staudtstr. 5, D-91058, Erlangen, Germany.
  • 3 Departamento de Produtos Farmacêuticos, Faculdade de Farmácia, Universidade Federal de Minas Gerais (UFMG), Belo Horizonte, MG, 31270-901, Brazil.
  • 4 Departmento de Produção de Matéria-Prima, Faculdade de Farmácia, Universidade Federal de Rio Grande do Sul (UFRGS), Porto Alegre, RS, 90610-000, Brazil.
  • 5 Departmento de Química, Instituto de Ciências Exatas, Universidade Federal de Minas Gerais (UFMG), Belo Horizonte, MG, 31270-901, Brazil.
  • 6 Laboratório de Virologia Aplicada, Programa de Pós-Graduação em Farmácia, Universidade Federal de Santa Catarina (UFSC), Florianópolis, SC, 88040-970, Brazil. Electronic address: claudia.simoes@ufsc.br.
Abstract

In recent years, new therapeutic possibilities were proposed for cardiac glycosides traditionally used to treat heart diseases, such as Anticancer and Antiviral activities. In this sense, this work aimed to synthesize the readily accessible 3β-azido-3-deoxydigitoxigenin (5) from digitoxigenin (1). Two new series of compounds were obtained from derivative (5): (i) O-glycosyl trizols through Click Chemistry with propargyl glycosides; and (ii) compounds substituted in the alpha carbonyl position with different residues linked via an amino-group. All obtained derivatives have their chemical structures confirmed, and their anti-herpes (against HSV-types 1 and 2 replication) and cytotoxic (against PC3, A549, HCT-8 and LNCaP cell lines) activities evaluated. Compounds 10 and 11 exhibited the most promising results against HSV-1 (KOS and 29-R strains) and HSV-2 (333 strain) replication with SI values > 1000. Both compounds were also the most cytotoxic for the human Cancer cell lines tested with IC50 values similar to those of paclitaxel. They also presented reduced toxicity toward non-cancerous cell lines (MRC-5 and HGF cells). Promising compounds were tested in regard to their ability to inhibit Na+/K+-ATPase. The inhibition rate correlates suitably with the bioactivity demonstrated by those both compounds against the different human Cancer cells tested as well as against HSV replication. Moreover, the results showed that specific chemical features of compound 10 and 11 influenced the bioactivities tested. In summary, it was possible to obtain novel digitoxigenin-derivatives with remarkable cytotoxic and anti-herpes activities as well as low toxicity and high selectivity. In this way, they could be considered potential molecules for the development of new drugs.

Keywords

Anti-herpes; Cardenolides; Cytotoxic; Digitoxigenin-derivatives.

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