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Synthesis Antifungal Activity and 3D-QSAR Study of Novel Nopol-Derived 134-Thiadiazole-Thiourea Compounds

机译:新型Nopol衍生的134-噻二唑 - 硫脲化合物的合成抗真菌活性和3D QSAR研究

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摘要

A series of novel nopol derivatives bearing the 1,3,4-thiadiazole-thiourea moiety were designed and synthesized by multi-step reactions in search of potent natural product-based antifungal agents. Their structures were confirmed by FT-IR, NMR, ESI-MS, and elemental analysis. Antifungal activity of the target compounds was preliminarily evaluated by in vitro methods against Fusarium oxysporum f. sp. cucumerinum, Cercospora arachidicola, Physalospora piricola, Alternaria solani, Gibberella zeae, Rhizoeotnia solani, Bipolaris maydis, and Colleterichum orbicalare at 50 µg/mL. All the target compounds exhibited better antifungal activity against P. piricola, C. arachidicola, and A. solani. Compound 6j (R = m, p-Cl Ph) showed the best broad-spectrum antifungal activity against all the tested fungi. Compounds 6c (R = m-Me Ph), 6q (R = i-Pr), and 6i (R = p-Cl Ph) had inhibition rates of 86.1%, 86.1%, and 80.2%, respectively, against P. piricola, much better than that of the positive control chlorothalonil. Moreover, compounds 6h (R = m-Cl Ph) and 6n (R = o-CF3 Ph) held inhibition rates of 80.6% and 79.0% against C. arachidicola and G. zeae, respectively, much better than that of the commercial fungicide chlorothalonil. In order to design more effective antifungal compounds against A. solani, analysis of the three-dimensional quantitative structure–activity relationship (3D-QSAR) was carried out using the CoMFA method, and a reasonable and effective 3D-QSAR model (r2 = 0.992, q2 = 0.753) has been established. Furthermore, some intriguing structure–activity relationships were found and are discussed by theoretical calculation.
机译:通过多步反应设计和合成载有1,3,4-噻二唑硫脲部分的一系列新的Nopol衍生物,以寻找有效的天然产物的抗真菌剂。通过FT-IR,NMR,ESI-MS和元素分析证实了它们的结构。预先通过针对镰刀镰刀菌的体外方法预先评价靶化合物的抗真菌活性。 sp。 Cucumerinum,Cercospora arachidicola,physalospora piricola,alertaria solani,gibberella zeae,rhizoeotnia solani,bipolaris maydis,以及50μg/ ml的Collectichum orbicalare。所有目标化合物均表现出对P.Piricola,C.Arachidicola和A.Solani的更好的抗真菌活性。化合物6J(r = m,p-cl pH)显示出对所有测试真菌的最佳宽谱抗真菌活性。化合物6c(r = m-me pH),6q(r = i-pr)和6i(r = p-cl pH)分别具有86.1%,86.1%和80.2%的抑制率,而p. piricola ,比阳性对照氯洛尼洛尼洛尼洛尼更好。此外,将化合物6H(R = M-Cl pH)和6N(R = O-CF3 pH)保持80.6%和79.0%的抑制率,分别对C.Alachidicola和G. Zeae的抑制率远远优于商业杀菌剂氯洛尼洛尼洛尼洛尼洛洛洛尼洛尼洛洛洛尼洛尼洛尼洛为了设计更有效的抗真菌化合物来A.Solani,使用COMFA方法进行三维定量结构 - 活性关系(3D-QSAR)的分析,以及合理且有效的3D-QSAR模型(​​R2 = 0.992 ,Q2 = 0.753)已经建立。此外,发现了一些有趣的结构 - 活性关系,并通过理论计算讨论。

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