Cargando…

Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients

Drimys winteri J.R. (Winteraceae) produce drimane sesquiterpenoids with activity against Candida yeast. In this work, drimenol, polygodial (1), isotadeonal (2), and a new drimane α,β-unsaturated 1,4-dialdehyde, named winterdial (4), were purified from barks of D. winteri. The oxidation of drimenol p...

Descripción completa

Detalles Bibliográficos
Autores principales: Marín, Víctor, Bart, Bryan, Cortez, Nicole, Jiménez, Verónica A., Silva, Víctor, Leyton, Oscar, Cabrera-Pardo, Jaime R., Schmidt, Bernd, Heydenreich, Matthias, Burgos, Viviana, Paz, Cristian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570005/
https://www.ncbi.nlm.nih.gov/pubmed/36233069
http://dx.doi.org/10.3390/ijms231911753
_version_ 1784809998744813568
author Marín, Víctor
Bart, Bryan
Cortez, Nicole
Jiménez, Verónica A.
Silva, Víctor
Leyton, Oscar
Cabrera-Pardo, Jaime R.
Schmidt, Bernd
Heydenreich, Matthias
Burgos, Viviana
Paz, Cristian
author_facet Marín, Víctor
Bart, Bryan
Cortez, Nicole
Jiménez, Verónica A.
Silva, Víctor
Leyton, Oscar
Cabrera-Pardo, Jaime R.
Schmidt, Bernd
Heydenreich, Matthias
Burgos, Viviana
Paz, Cristian
author_sort Marín, Víctor
collection PubMed
description Drimys winteri J.R. (Winteraceae) produce drimane sesquiterpenoids with activity against Candida yeast. In this work, drimenol, polygodial (1), isotadeonal (2), and a new drimane α,β-unsaturated 1,4-dialdehyde, named winterdial (4), were purified from barks of D. winteri. The oxidation of drimenol produced the monoaldehyde drimenal (3). These four aldehyde sesquiterpenoids were evaluated against six Candida species isolated from candidemia patients in Chilean hospitals. Results showed that 1 displays fungistatic activity against all yeasts (3.75 to 15.0 µg/mL), but irritant effects on eyes and skin, whereas its non-pungent epimer 2 has fungistatic and fungicide activities at 1.9 and 15.0 µg/mL, respectively. On the other hand, compounds 3 and 4 were less active. Molecular dynamics simulations suggested that compounds 1–4 are capable of binding to the catalytic pocket of lanosterol 14-alpha demethylase with similar binding free energies, thus suggesting a potential mechanism of action through the inhibition of ergosterol synthesis. According to our findings, compound 2 appears as a valuable molecular scaffold to pursue the future development of more potent drugs against candidiasis with fewer side effects than polygodial. These outcomes are significant to broaden the alternatives to treat fungal infections with increasing prevalence worldwide using natural compounds as a primary source for active compounds.
format Online
Article
Text
id pubmed-9570005
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-95700052022-10-17 Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients Marín, Víctor Bart, Bryan Cortez, Nicole Jiménez, Verónica A. Silva, Víctor Leyton, Oscar Cabrera-Pardo, Jaime R. Schmidt, Bernd Heydenreich, Matthias Burgos, Viviana Paz, Cristian Int J Mol Sci Article Drimys winteri J.R. (Winteraceae) produce drimane sesquiterpenoids with activity against Candida yeast. In this work, drimenol, polygodial (1), isotadeonal (2), and a new drimane α,β-unsaturated 1,4-dialdehyde, named winterdial (4), were purified from barks of D. winteri. The oxidation of drimenol produced the monoaldehyde drimenal (3). These four aldehyde sesquiterpenoids were evaluated against six Candida species isolated from candidemia patients in Chilean hospitals. Results showed that 1 displays fungistatic activity against all yeasts (3.75 to 15.0 µg/mL), but irritant effects on eyes and skin, whereas its non-pungent epimer 2 has fungistatic and fungicide activities at 1.9 and 15.0 µg/mL, respectively. On the other hand, compounds 3 and 4 were less active. Molecular dynamics simulations suggested that compounds 1–4 are capable of binding to the catalytic pocket of lanosterol 14-alpha demethylase with similar binding free energies, thus suggesting a potential mechanism of action through the inhibition of ergosterol synthesis. According to our findings, compound 2 appears as a valuable molecular scaffold to pursue the future development of more potent drugs against candidiasis with fewer side effects than polygodial. These outcomes are significant to broaden the alternatives to treat fungal infections with increasing prevalence worldwide using natural compounds as a primary source for active compounds. MDPI 2022-10-04 /pmc/articles/PMC9570005/ /pubmed/36233069 http://dx.doi.org/10.3390/ijms231911753 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Marín, Víctor
Bart, Bryan
Cortez, Nicole
Jiménez, Verónica A.
Silva, Víctor
Leyton, Oscar
Cabrera-Pardo, Jaime R.
Schmidt, Bernd
Heydenreich, Matthias
Burgos, Viviana
Paz, Cristian
Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients
title Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients
title_full Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients
title_fullStr Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients
title_full_unstemmed Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients
title_short Drimane Sesquiterpene Aldehydes Control Candida Yeast Isolated from Candidemia in Chilean Patients
title_sort drimane sesquiterpene aldehydes control candida yeast isolated from candidemia in chilean patients
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9570005/
https://www.ncbi.nlm.nih.gov/pubmed/36233069
http://dx.doi.org/10.3390/ijms231911753
work_keys_str_mv AT marinvictor drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT bartbryan drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT corteznicole drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT jimenezveronicaa drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT silvavictor drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT leytonoscar drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT cabrerapardojaimer drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT schmidtbernd drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT heydenreichmatthias drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT burgosviviana drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients
AT pazcristian drimanesesquiterpenealdehydescontrolcandidayeastisolatedfromcandidemiainchileanpatients