Antifungal activity of sustainable histone deacetylase inhibitors against planktonic cells and biofilms of Candida spp. and Cryptococcusneoformans

Author:

de Oliveira Andressa Souza12,de Oliveira Jonathas Sales3,Kumar Rajender4,Silva Fabiana Brandão Alves5,Fernandes Mirele Rodrigues3,Nobre Feynman Dias3,Costa Anderson da Cunha3,Albuquerque Patrícia6,Sidrim José Júlio Costa3,Rocha Marcos Fábio Gadelha3,Santos Flavia Almeida7,Srivastava Vaibhav4,Romeiro Luiz Antonio Soares125,Brilhante Raimunda Sâmia Nogueira3

Affiliation:

1. Laboratory of Development of Therapeutic Innovations, Tropical Medicine Centre, Faculty of Medicine, University of Brasilia. Campus Darcy Ribeiro, Asa Norte , Brasília 70910-900, DF , Brazil

2. Postgraduate Program in Pharmaceutical Sciences, Faculty of Health Sciences, University of Brasilia. Campus Darcy Ribeiro, Asa Norte , Brasília 70910-900, DF , Brazil

3. Specialized Medical Mycology Centre, Postgraduate Program in Medical Microbiology, Department of Pathology and Legal Medicine, Federal University of Ceará. Rua Cel. Nunes de Melo, 1315, Rodolfo Teófilo , Fortaleza 60430-275, CE , Brazil

4. Division of Glycoscience, Department of Chemistry, School of Engineering Sciences in Chemistry, Biotechnology and Health, KTH Royal Institute of Technology, AlbaNova University Center , 106 91 Stockholm , Sweden

5. Postgraduate Program in Tropical Medicine, Faculty of Medicine, University of Brasilia. Campus Darcy Ribeiro, Asa Norte , Brasília 70910-900, DF , Brazil

6. University of Brasília. Campus Ceilândia, Centro Metropolitano Conjunto A Lote 01, Ceilândia Sul , Brasília 72220-900, DF , Brazil

7. Laboratory of Natural Products, Department of Physiology and Pharmacology, Federal University of Ceará. Rua Cel. Nunes de Melo, 1315, Rodolfo Teófilo , Fortaleza 60430-275, CE , Brazil

Abstract

Abstract The limited therapeutic options for fungal infections and the increased incidence of fungal strains resistant to antifungal drugs, especially Candida spp., require the development of new antifungal drugs and strategies. Histone deacetylase inhibitors (HDACi), like vorinostat, have been studied in cancer treatment and have antifungal effects, acting alone or synergistically with classical antifungals. Here we investigated the antifungal activity of two novel sustainable HDACi (LDT compounds) based on vorinostat structure. Molecular docking simulation studies reveal that LDT compounds can bind to Class-I HDACs of Candida albicans, C. tropicalis, and Cryptococcus neoformans, which showed similar binding mode to vorinostat. LDT compounds showed moderate activity when tested alone against fungi but act synergistically with antifungal azoles against Candida spp. They reduced biofilm formation by more than 50% in C. albicans (4 µg/mL), with the main action in fungal filamentation. Cytotoxicity of the LDT compounds against RAW264.7 cells was evaluated and LDT536 demonstrated cytotoxicity only at the concentration of 200 µmol/L, while LDT537 showed IC50 values of 29.12 µmol/L. Our data indicated that these sustainable and inexpensive HDACi have potential antifungal and antibiofilm activities, with better results than vorinostat, although further studies are necessary to better understand the mechanism against fungal cells.

Funder

CNPq

CAPES

Publisher

Oxford University Press (OUP)

Subject

Infectious Diseases,General Medicine

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