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Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives

Phytopathogenic fungi have become a serious threat to the quality of agricultural products, food security and human health globally, necessitating the need to discover new antifungal agents with de novo chemical scaffolds and high efficiency. A series of 8-hydroxyquinoline derivatives were designed...

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Autores principales: Yin, Xiao-Dan, Sun, Yu, Lawoe, Raymond Kobla, Yang, Guan-Zhou, Liu, Ying-Qian, Shang, Xiao-Fei, Liu, Hua, Yang, Yu-Dong, Zhu, Jia-Kai, Huang, Xiao-Ling
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9072087/
https://www.ncbi.nlm.nih.gov/pubmed/35530209
http://dx.doi.org/10.1039/c9ra05712a
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author Yin, Xiao-Dan
Sun, Yu
Lawoe, Raymond Kobla
Yang, Guan-Zhou
Liu, Ying-Qian
Shang, Xiao-Fei
Liu, Hua
Yang, Yu-Dong
Zhu, Jia-Kai
Huang, Xiao-Ling
author_facet Yin, Xiao-Dan
Sun, Yu
Lawoe, Raymond Kobla
Yang, Guan-Zhou
Liu, Ying-Qian
Shang, Xiao-Fei
Liu, Hua
Yang, Yu-Dong
Zhu, Jia-Kai
Huang, Xiao-Ling
author_sort Yin, Xiao-Dan
collection PubMed
description Phytopathogenic fungi have become a serious threat to the quality of agricultural products, food security and human health globally, necessitating the need to discover new antifungal agents with de novo chemical scaffolds and high efficiency. A series of 8-hydroxyquinoline derivatives were designed and synthesized, and their antifungal activity was evaluated against five phytopathogenic fungi. In vitro assays revealed that most of the tested compounds remarkably impacted the five target fungi and their inhibitory activities were better than that of the positive control azoxystrobin. Compound 2, in particular, exhibited the highest potency among all the tested compounds, with an EC(50) of 0.0021, 0.0016, 0.0124, 0.0059 and 0.0120 mM respectively against B. cinerea, S. sclerotiorum, F. graminearum, F. oxysporum and M. oryzae, followed by compound 5c. The morphological observations of optical microscopy and scanning electron microscopy revealed that compounds 2 and 5c caused mycelial abnormalities of S. sclerotiorum. Futhermore, the results of in vivo antifungal activity of compounds 2 and 5c against S. sclerotiorum showed that 5c possessed stronger protective and curative activity than that of 2, and the curative effects of 5c at 40 and 80 μg mL(−1) (84.18% and 95.44%) were better than those of azoxystrobin (77.32% and 83.59%). Therefore, compounds 2 and 5c are expected to be novel lead structures for the development of new fungicides.
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spelling pubmed-90720872022-05-06 Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives Yin, Xiao-Dan Sun, Yu Lawoe, Raymond Kobla Yang, Guan-Zhou Liu, Ying-Qian Shang, Xiao-Fei Liu, Hua Yang, Yu-Dong Zhu, Jia-Kai Huang, Xiao-Ling RSC Adv Chemistry Phytopathogenic fungi have become a serious threat to the quality of agricultural products, food security and human health globally, necessitating the need to discover new antifungal agents with de novo chemical scaffolds and high efficiency. A series of 8-hydroxyquinoline derivatives were designed and synthesized, and their antifungal activity was evaluated against five phytopathogenic fungi. In vitro assays revealed that most of the tested compounds remarkably impacted the five target fungi and their inhibitory activities were better than that of the positive control azoxystrobin. Compound 2, in particular, exhibited the highest potency among all the tested compounds, with an EC(50) of 0.0021, 0.0016, 0.0124, 0.0059 and 0.0120 mM respectively against B. cinerea, S. sclerotiorum, F. graminearum, F. oxysporum and M. oryzae, followed by compound 5c. The morphological observations of optical microscopy and scanning electron microscopy revealed that compounds 2 and 5c caused mycelial abnormalities of S. sclerotiorum. Futhermore, the results of in vivo antifungal activity of compounds 2 and 5c against S. sclerotiorum showed that 5c possessed stronger protective and curative activity than that of 2, and the curative effects of 5c at 40 and 80 μg mL(−1) (84.18% and 95.44%) were better than those of azoxystrobin (77.32% and 83.59%). Therefore, compounds 2 and 5c are expected to be novel lead structures for the development of new fungicides. The Royal Society of Chemistry 2019-09-24 /pmc/articles/PMC9072087/ /pubmed/35530209 http://dx.doi.org/10.1039/c9ra05712a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Yin, Xiao-Dan
Sun, Yu
Lawoe, Raymond Kobla
Yang, Guan-Zhou
Liu, Ying-Qian
Shang, Xiao-Fei
Liu, Hua
Yang, Yu-Dong
Zhu, Jia-Kai
Huang, Xiao-Ling
Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
title Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
title_full Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
title_fullStr Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
title_full_unstemmed Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
title_short Synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
title_sort synthesis and anti-phytopathogenic activity of 8-hydroxyquinoline derivatives
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9072087/
https://www.ncbi.nlm.nih.gov/pubmed/35530209
http://dx.doi.org/10.1039/c9ra05712a
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