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Anti-tubercular activity of a natural stilbene and its synthetic derivatives

Objectives: Tuberculosis (TB) and multidrug- and extensively drug-resistant TB in particular are remaining a major global health challenge and efficient new drugs against TB are needed. This study evaluated the anti-tubercular activity of a natural stilbene and its synthetic derivatives against M. t...

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Autores principales: Reinheimer, Claudia, Büttner, Dominik, Proschak, Eugen, Bode, Helge B., Kempf, Volkhard A. J., Wichelhaus, Thomas A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: German Medical Science GMS Publishing House 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6301740/
https://www.ncbi.nlm.nih.gov/pubmed/30671332
http://dx.doi.org/10.3205/id000036
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author Reinheimer, Claudia
Büttner, Dominik
Proschak, Eugen
Bode, Helge B.
Kempf, Volkhard A. J.
Wichelhaus, Thomas A.
author_facet Reinheimer, Claudia
Büttner, Dominik
Proschak, Eugen
Bode, Helge B.
Kempf, Volkhard A. J.
Wichelhaus, Thomas A.
author_sort Reinheimer, Claudia
collection PubMed
description Objectives: Tuberculosis (TB) and multidrug- and extensively drug-resistant TB in particular are remaining a major global health challenge and efficient new drugs against TB are needed. This study evaluated the anti-tubercular activity of a natural stilbene and its synthetic derivatives against M. tuberculosis. Methods: Isopropylstilbene and its synthetic derivatives were analyzed for their anti-tubercular activity against M. tuberculosis ATCC 27294 as well as multidrug- and extensively drug-resistant M. tuberculosis clinical isolates by using MGIT 960 instrumentation and EpiCenter software equipped with TB eXiST module. Cytotoxic effects of drug candidates were determined by a MTT dye reduction assay using A549 adenocarcinomic human alveolar basal epithelial cells. Results: Growth of M. tuberculosis ATCC 27294 was suppressed by the natural isopropylstilbene HB64 as well as synthetic derivatives DB56 and DB55 at 25 µg/ml. Growth of clinical isolates MDR and XDR M. tuberculosis was suppressed by HB64 at 100 µg/ml as well as by synthetic derivatives DB56 and DB55 at 50 µg/ml and 25 µg/ml, respectively. No anti-tubercular activity was demonstrated for synthetic derivatives DB53, EB251, and RB57 at 100 µg/ml. Toxicity in terms of IC(50) values of HB64, DB55 and DB56 were 7.92 µg/ml, 12.15 µg/ml and 16.01 µg/ml, respectively. Conclusions: Synthetical derivatives of stilbene might be effective candidates as anti-tubercular drugs. However, toxicity of these substances as determined by IC(50) values might limit therapeutic success in vivo. Further investigations should address lowering the toxicity for parenteral administration by remodeling stilbene derivatives.
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spelling pubmed-63017402019-01-22 Anti-tubercular activity of a natural stilbene and its synthetic derivatives Reinheimer, Claudia Büttner, Dominik Proschak, Eugen Bode, Helge B. Kempf, Volkhard A. J. Wichelhaus, Thomas A. GMS Infect Dis Article Objectives: Tuberculosis (TB) and multidrug- and extensively drug-resistant TB in particular are remaining a major global health challenge and efficient new drugs against TB are needed. This study evaluated the anti-tubercular activity of a natural stilbene and its synthetic derivatives against M. tuberculosis. Methods: Isopropylstilbene and its synthetic derivatives were analyzed for their anti-tubercular activity against M. tuberculosis ATCC 27294 as well as multidrug- and extensively drug-resistant M. tuberculosis clinical isolates by using MGIT 960 instrumentation and EpiCenter software equipped with TB eXiST module. Cytotoxic effects of drug candidates were determined by a MTT dye reduction assay using A549 adenocarcinomic human alveolar basal epithelial cells. Results: Growth of M. tuberculosis ATCC 27294 was suppressed by the natural isopropylstilbene HB64 as well as synthetic derivatives DB56 and DB55 at 25 µg/ml. Growth of clinical isolates MDR and XDR M. tuberculosis was suppressed by HB64 at 100 µg/ml as well as by synthetic derivatives DB56 and DB55 at 50 µg/ml and 25 µg/ml, respectively. No anti-tubercular activity was demonstrated for synthetic derivatives DB53, EB251, and RB57 at 100 µg/ml. Toxicity in terms of IC(50) values of HB64, DB55 and DB56 were 7.92 µg/ml, 12.15 µg/ml and 16.01 µg/ml, respectively. Conclusions: Synthetical derivatives of stilbene might be effective candidates as anti-tubercular drugs. However, toxicity of these substances as determined by IC(50) values might limit therapeutic success in vivo. Further investigations should address lowering the toxicity for parenteral administration by remodeling stilbene derivatives. German Medical Science GMS Publishing House 2018-02-01 /pmc/articles/PMC6301740/ /pubmed/30671332 http://dx.doi.org/10.3205/id000036 Text en Copyright © 2018 Reinheimer et al. This is an Open Access article distributed under the terms of the Creative Commons Attribution 4.0 License. See license information at http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Reinheimer, Claudia
Büttner, Dominik
Proschak, Eugen
Bode, Helge B.
Kempf, Volkhard A. J.
Wichelhaus, Thomas A.
Anti-tubercular activity of a natural stilbene and its synthetic derivatives
title Anti-tubercular activity of a natural stilbene and its synthetic derivatives
title_full Anti-tubercular activity of a natural stilbene and its synthetic derivatives
title_fullStr Anti-tubercular activity of a natural stilbene and its synthetic derivatives
title_full_unstemmed Anti-tubercular activity of a natural stilbene and its synthetic derivatives
title_short Anti-tubercular activity of a natural stilbene and its synthetic derivatives
title_sort anti-tubercular activity of a natural stilbene and its synthetic derivatives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6301740/
https://www.ncbi.nlm.nih.gov/pubmed/30671332
http://dx.doi.org/10.3205/id000036
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