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首页> 外文期刊>Journal of natural products >Using a Bioactive Eremophila-Derived Serrulatane Scaffold to Generate a Unique Carbamate Library for Anti-infective Evaluations
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Using a Bioactive Eremophila-Derived Serrulatane Scaffold to Generate a Unique Carbamate Library for Anti-infective Evaluations

机译:使用具有生物活性的嗜埃雷莫菌衍生的舍鲁拉坦支架生成独特的氨基甲酸酯文库,用于抗感染评估

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The known Eremophila microtheca-derived diterpenoid 3,7,8-trihydroxyserrulat-14-en-19-oic acid (1) was targeted for large-scale purification, as this bioactive plant compound has proven to be an attractive scaffold for semisynthetic studies and subsequent library generation. Compound 1 was converted to a selectively protected trimethyl derivative, 3-hydroxy-7,8dimethoxyserrulat-14-en-19-oic acid methyl ester (2), using simple and rapid methylation conditions. The resulting scaffold 2 was reacted with a diverse series of commercially available isocyanates to generate an 11-membered carbamate-based library. The chemical structures of the 11 new semisynthetic analogues were fully characterized by spectroscopic and spectrometric analysis. All natural products and semisynthetic compounds were evaluated for their anthelmintic, antimalarial, and anti-HIV activities. Compound 3 was shown to elicit the greatest antiplasmodial activity of all compounds tested, with IC50 values of 4.6 and 11.6 mu M against Plasmodium falciparum 3D7 and Dd2, respectively. Compound 11 showed the greatest inhibition of development to fourth stage Haemonchus contortus larvae (L4) and induction of a skinny (Ski) phenotype (67.5 of nematodes) at 50 mu M. Compound 7, which inhibited 59.0 of HIV production at 100 mu g/mL, was the carbamate analogue that displayed the best antiviral activity.
机译:已知的 Eremophila microtheca 衍生的二萜类化合物 3,7,8-三羟基舍鲁拉-14-烯-19-酸 (1) 是大规模纯化的靶标,因为这种生物活性植物化合物已被证明是半合成研究和后续文库生成的有吸引力的支架。使用简单快速的甲基化条件将化合物 1 转化为选择性保护的三甲基衍生物 3-羟基-7,8 二甲氧基serrulat-14-en-19-oic 酸甲酯 (2)。所得支架 2 与一系列多种市售异氰酸酯反应,生成一个 11 元氨基甲酸酯基库。通过光谱和光谱分析对11种新的半合成类似物的化学结构进行了充分表征。评估了所有天然产物和半合成化合物的驱虫、抗疟和抗HIV活性。在所有测试的化合物中,化合物 3 显示出最大的抗疟原虫活性,对恶性疟原虫 3D7 和 Dd2 的 IC50 值分别为 4.6 和 11.6 μ M。化合物11在50 μ m时对发育至第四期扭曲血红素幼虫(L4)的抑制作用最大,并诱导瘦(Ski)表型(67.5%的线虫)在50 μ m时表现出最佳的抗病毒活性。

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