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首页> 外文期刊>PLoS One >One-pot three component synthesis of substituted dihydropyrimidinones using fruit juices as biocatalyst and their biological studies
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One-pot three component synthesis of substituted dihydropyrimidinones using fruit juices as biocatalyst and their biological studies

机译:用果汁作为生物催化剂的取代二氢嘧啶酮的一次性三分组分合成及其生物学研究

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New and facile one-pot three component approach for the synthesis of substituted dihydropyrimidinones derivatives (4a-4h) from reaction of equimolar substituted aldehydes (1a-1h), methyl acetoacetate (2a) and urea (3a) in presence of nature derived catalyst viz . Cocos nucifera L. juice, Solanum lycopersicum L. juice and Citrus limetta juice, commonly known as coconut juice, tomato juice and musambi juice respectively, at room temperature has been carried out. All synthesized compounds were evaluated for in vitro herbicidal activity against Raphanus sativus L. (Radish seeds). The compounds (4a-4h) were also screened for their antifungal activity against Rhizoctonia solani and Colletotrichum gloeosporioides by poisoned food techniques method. Antibacterial activity was also studied against Erwinia cartovora and Xanthomonas citri by inhibition zone method. From activity data, it was found that compounds 4g and 4d were most active against Raphanus sativus L. (root) and Raphanus sativus L. (shoot) respectively. Compounds 4f and 4c was found most active against Rhizoctonia solani and Colletotrichum gloeosporioides fungus respectively at highest concentration. Compound 4g has shown maximum inhibition zone i.e. 1.00–5.50 mm against Erwinia cartovora at 2000 μg/mL concentration. Maximum Xanthomonas citrii growth was inhibited by compounds 4f showing inhibition zone 4.00–12.00 mm at highest concentration. Short reaction time, high yields, mild reaction condition and simple work-up are some merits of present methodology.
机译:新的和容易一罐三种组分方法,用于在自然衍生催化剂催化剂催化剂的等摩尔取代醛(1A-1H),乙酰乙酸乙酯(2A)和尿素(3A)的反应中合成取代的二氢嘧啶酮衍生物(4A-4H) 。 Cocos Nucifera L. Juice,Solanum Lycopersicum L.果汁和柑橘菊花汁,分别称为椰子汁,番茄汁和穆斯巴比汁,在室温下进行。评估所有合成的化合物,用于针对Raphanus sativus L.(萝卜种子)的体外除草活性。还通过中毒食品技术筛选筛选化合物(4A-4H)的抗真菌活性和Colletottrichum GroooSporioides的抗真菌活性。还通过抑制区法针对Erwinia Cartovora和Xanthomonas Citri研究了抗菌活性。从活性数据中,发现化合物4G和4D分别对Raphanus Sativus L.(根)和Raphanus Sativus L.(射击)最活跃。在最高浓度下,将化合物4F和4C发现最活跃的Rhizoctonia Solani和Colletotrichum GleooSporioides真菌。化合物4g显示了2000μg/ ml浓度的最大抑制区I. 1.00-5.50mm。通过在最高浓度下显示抑制区4.00-12.00mm的化合物4f抑制了最大Xanthomonas Citrii生长。短反应时间,高产率,轻度反应条件和简单的处理是当前方法的一些优点。

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