Cargando…

In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma

3,5-dihydroxy Q1 -4-ethyl-trans-stilbene (DETS) is a natural stilbene, which was first identified as bioactive bacterial secondary metabolite isolated from Bacillus cereus associated with a rhabditid entomopathogenic nematode. The present study was intended to investigate the antioxidant and antican...

Descripción completa

Detalles Bibliográficos
Autores principales: Nath, Lekshmi R., Kumar, S. N., Das, Arya A., Nambisan, Bala, Shabna, A., Mohandas, Chellapan, Anto, Ruby John
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4830835/
https://www.ncbi.nlm.nih.gov/pubmed/27148169
http://dx.doi.org/10.3389/fmicb.2016.00452
_version_ 1782426955961860096
author Nath, Lekshmi R.
Kumar, S. N.
Das, Arya A.
Nambisan, Bala
Shabna, A.
Mohandas, Chellapan
Anto, Ruby John
author_facet Nath, Lekshmi R.
Kumar, S. N.
Das, Arya A.
Nambisan, Bala
Shabna, A.
Mohandas, Chellapan
Anto, Ruby John
author_sort Nath, Lekshmi R.
collection PubMed
description 3,5-dihydroxy Q1 -4-ethyl-trans-stilbene (DETS) is a natural stilbene, which was first identified as bioactive bacterial secondary metabolite isolated from Bacillus cereus associated with a rhabditid entomopathogenic nematode. The present study was intended to investigate the antioxidant and anticancer activity of this compound in vitro. Antioxidant activity was investigated by assaying DPPH free radical scavenging, superoxide radical-(O2..) scavenging, hydroxyl radical scavenging and metal chelating activity, which proved that the compound is a powerful antioxidant. The metal chelating activity of DETS was higher than butylated hydroxyanisol (BHA) and gallic acid, two well-known antioxidants. As the molecule exhibited strong antioxidant potential, it was further evaluated for cytotoxic activity toward five cancer cells of various origins. Since the compound has a strong structural similarity with resveratrol (trans- 3,4,5-trihydroxystilbene), a well-studied chemopreventive polyphenolic antioxidant, its anticancer activity was compared with that of resveratrol. Among the five cancer cells studied, the compound showed maximum cytotoxicity toward the human melanoma cell line, [A375, IC(50): 24.01 μM] followed by cervical [HeLa-46.17 μM], colon [SW480- 47.28 μM], liver [HepG2- 69.56 μM] and breast [MCF-7- 84.31 μM] cancer cells. A375 was much more sensitive to DETS compared to the non-melanoma cell line, A431, in which the IC50 of the compound was more than double (49.60 μM). In the present study, the anticancer activity of DETS against melanoma was confirmed by various apoptosis assays. We also observed that DETS, like resveratrol, down-regulates the expression status of major molecules contributing to melanoma progression, such as BRAF, β-catenin and Brn-2, all of which converge in MITF-M, the master regulator of melanoma signaling. The regulatory role of MITF-M in DETS-induced cytotoxicity in melanoma cells was confirmed by comparing the cytotoxicity of DETS in A375 cells (IC(50)-24.01 μM), with that in SK-MEL-2 (IC(50)-67.6 μM), another melanoma cells which highly over-express MITF-M. The compound arrests the cells at S-G2 transition state of the cell cycle, as resveratrol. Our results indicate that DETS is a powerful antioxidant, having anticancer efficacy comparable with that of resveratrol, and is a potential candidate to be explored by in vivo studies and in-depth mechanistic evaluation. To our knowledge, this is the first report on the antioxidant and anticancer properties of DETS.
format Online
Article
Text
id pubmed-4830835
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-48308352016-05-04 In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma Nath, Lekshmi R. Kumar, S. N. Das, Arya A. Nambisan, Bala Shabna, A. Mohandas, Chellapan Anto, Ruby John Front Microbiol Microbiology 3,5-dihydroxy Q1 -4-ethyl-trans-stilbene (DETS) is a natural stilbene, which was first identified as bioactive bacterial secondary metabolite isolated from Bacillus cereus associated with a rhabditid entomopathogenic nematode. The present study was intended to investigate the antioxidant and anticancer activity of this compound in vitro. Antioxidant activity was investigated by assaying DPPH free radical scavenging, superoxide radical-(O2..) scavenging, hydroxyl radical scavenging and metal chelating activity, which proved that the compound is a powerful antioxidant. The metal chelating activity of DETS was higher than butylated hydroxyanisol (BHA) and gallic acid, two well-known antioxidants. As the molecule exhibited strong antioxidant potential, it was further evaluated for cytotoxic activity toward five cancer cells of various origins. Since the compound has a strong structural similarity with resveratrol (trans- 3,4,5-trihydroxystilbene), a well-studied chemopreventive polyphenolic antioxidant, its anticancer activity was compared with that of resveratrol. Among the five cancer cells studied, the compound showed maximum cytotoxicity toward the human melanoma cell line, [A375, IC(50): 24.01 μM] followed by cervical [HeLa-46.17 μM], colon [SW480- 47.28 μM], liver [HepG2- 69.56 μM] and breast [MCF-7- 84.31 μM] cancer cells. A375 was much more sensitive to DETS compared to the non-melanoma cell line, A431, in which the IC50 of the compound was more than double (49.60 μM). In the present study, the anticancer activity of DETS against melanoma was confirmed by various apoptosis assays. We also observed that DETS, like resveratrol, down-regulates the expression status of major molecules contributing to melanoma progression, such as BRAF, β-catenin and Brn-2, all of which converge in MITF-M, the master regulator of melanoma signaling. The regulatory role of MITF-M in DETS-induced cytotoxicity in melanoma cells was confirmed by comparing the cytotoxicity of DETS in A375 cells (IC(50)-24.01 μM), with that in SK-MEL-2 (IC(50)-67.6 μM), another melanoma cells which highly over-express MITF-M. The compound arrests the cells at S-G2 transition state of the cell cycle, as resveratrol. Our results indicate that DETS is a powerful antioxidant, having anticancer efficacy comparable with that of resveratrol, and is a potential candidate to be explored by in vivo studies and in-depth mechanistic evaluation. To our knowledge, this is the first report on the antioxidant and anticancer properties of DETS. Frontiers Media S.A. 2016-04-14 /pmc/articles/PMC4830835/ /pubmed/27148169 http://dx.doi.org/10.3389/fmicb.2016.00452 Text en Copyright © 2016 Nath, Kumar, Das, Nambisan, Shabna, Mohandas and Anto. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Nath, Lekshmi R.
Kumar, S. N.
Das, Arya A.
Nambisan, Bala
Shabna, A.
Mohandas, Chellapan
Anto, Ruby John
In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma
title In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma
title_full In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma
title_fullStr In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma
title_full_unstemmed In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma
title_short In Vitro Evaluation of the Antioxidant, 3,5-Dihydroxy-4-ethyl-trans-stilbene (DETS) Isolated from Bacillus cereus as a Potent Candidate against Malignant Melanoma
title_sort in vitro evaluation of the antioxidant, 3,5-dihydroxy-4-ethyl-trans-stilbene (dets) isolated from bacillus cereus as a potent candidate against malignant melanoma
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4830835/
https://www.ncbi.nlm.nih.gov/pubmed/27148169
http://dx.doi.org/10.3389/fmicb.2016.00452
work_keys_str_mv AT nathlekshmir invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma
AT kumarsn invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma
AT dasaryaa invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma
AT nambisanbala invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma
AT shabnaa invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma
AT mohandaschellapan invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma
AT antorubyjohn invitroevaluationoftheantioxidant35dihydroxy4ethyltransstilbenedetsisolatedfrombacilluscereusasapotentcandidateagainstmalignantmelanoma