Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents

The concept of green chemistry has made significant impact on many frontages including the use of green solvents or sustainable catalyst materials. Benzimidazole ring is an important nitrogen-containing heterocyclic, which exhibits a broad spectrum of bioactivities and are widely utilized by the med...

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Main Authors: Leila Zamani, Zeinab Faghih, Kamiar Zomorodian, Bi Bi Fatemeh Mirjalili, Asghar Jalilian, Soghra Khabnadideh
Format: Article
Language:English
Published: Wolters Kluwer Medknow Publications 2019-01-01
Series:Research in Pharmaceutical Sciences
Subjects:
Online Access:http://www.rpsjournal.net/article.asp?issn=1735-5362;year=2019;volume=14;issue=6;spage=496;epage=503;aulast=Zamani
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spelling doaj-2d178582b88d4aa6a7531ba0a8013e3a2021-07-07T14:31:00ZengWolters Kluwer Medknow PublicationsResearch in Pharmaceutical Sciences1735-53621735-94142019-01-0114649650310.4103/1735-5362.272536Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agentsLeila ZamaniZeinab FaghihKamiar ZomorodianBi Bi Fatemeh MirjaliliAsghar JalilianSoghra KhabnadidehThe concept of green chemistry has made significant impact on many frontages including the use of green solvents or sustainable catalyst materials. Benzimidazole ring is an important nitrogen-containing heterocyclic, which exhibits a broad spectrum of bioactivities and are widely utilized by the medicinal chemists for drug discovery. A simple and efficient method was developed for the synthesis of some benzimidazole derivatives via reaction of o-phenylenediamine and substituted aldehydes in the presence of nano-SnCl4/SiO2 as a mild catalyst. Ten 2-substituted benzimidazole compounds (J1-J10) were synthesized. All compounds were evaluated against different species of yeasts and filament fungi using broth micro dilution method as recommended by clinical and laboratory standard institute. Among these compounds, the active ones were chosen for their cytotoxic activities evaluation against MCF-7 and A549 cell lines using MTT method. Compound J2 showed the best antifungal activity against all tested species. Compounds J5-J7 had also desirable antifungal activities. Our cytotoxic results were also similar to the antifungal activities except for J7 which had no cytotoxic activity.http://www.rpsjournal.net/article.asp?issn=1735-5362;year=2019;volume=14;issue=6;spage=496;epage=503;aulast=Zamaniantifungal; benzimidazole; cytotoxic; mtt; nano-sncl4/sio2
collection DOAJ
language English
format Article
sources DOAJ
author Leila Zamani
Zeinab Faghih
Kamiar Zomorodian
Bi Bi Fatemeh Mirjalili
Asghar Jalilian
Soghra Khabnadideh
spellingShingle Leila Zamani
Zeinab Faghih
Kamiar Zomorodian
Bi Bi Fatemeh Mirjalili
Asghar Jalilian
Soghra Khabnadideh
Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
Research in Pharmaceutical Sciences
antifungal; benzimidazole; cytotoxic; mtt; nano-sncl4/sio2
author_facet Leila Zamani
Zeinab Faghih
Kamiar Zomorodian
Bi Bi Fatemeh Mirjalili
Asghar Jalilian
Soghra Khabnadideh
author_sort Leila Zamani
title Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
title_short Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
title_full Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
title_fullStr Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
title_full_unstemmed Nano-SnCl4.SiO2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
title_sort nano-sncl4.sio2, an efficient catalyst for synthesis of benzimidazole drivatives as antifungal and cytotoxic agents
publisher Wolters Kluwer Medknow Publications
series Research in Pharmaceutical Sciences
issn 1735-5362
1735-9414
publishDate 2019-01-01
description The concept of green chemistry has made significant impact on many frontages including the use of green solvents or sustainable catalyst materials. Benzimidazole ring is an important nitrogen-containing heterocyclic, which exhibits a broad spectrum of bioactivities and are widely utilized by the medicinal chemists for drug discovery. A simple and efficient method was developed for the synthesis of some benzimidazole derivatives via reaction of o-phenylenediamine and substituted aldehydes in the presence of nano-SnCl4/SiO2 as a mild catalyst. Ten 2-substituted benzimidazole compounds (J1-J10) were synthesized. All compounds were evaluated against different species of yeasts and filament fungi using broth micro dilution method as recommended by clinical and laboratory standard institute. Among these compounds, the active ones were chosen for their cytotoxic activities evaluation against MCF-7 and A549 cell lines using MTT method. Compound J2 showed the best antifungal activity against all tested species. Compounds J5-J7 had also desirable antifungal activities. Our cytotoxic results were also similar to the antifungal activities except for J7 which had no cytotoxic activity.
topic antifungal; benzimidazole; cytotoxic; mtt; nano-sncl4/sio2
url http://www.rpsjournal.net/article.asp?issn=1735-5362;year=2019;volume=14;issue=6;spage=496;epage=503;aulast=Zamani
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AT zeinabfaghih nanosncl4sio2anefficientcatalystforsynthesisofbenzimidazoledrivativesasantifungalandcytotoxicagents
AT kamiarzomorodian nanosncl4sio2anefficientcatalystforsynthesisofbenzimidazoledrivativesasantifungalandcytotoxicagents
AT bibifatemehmirjalili nanosncl4sio2anefficientcatalystforsynthesisofbenzimidazoledrivativesasantifungalandcytotoxicagents
AT asgharjalilian nanosncl4sio2anefficientcatalystforsynthesisofbenzimidazoledrivativesasantifungalandcytotoxicagents
AT soghrakhabnadideh nanosncl4sio2anefficientcatalystforsynthesisofbenzimidazoledrivativesasantifungalandcytotoxicagents
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