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对具有高活性的氨基硫脲衍生物的合成及生物学评价 。 需注意,原文句末toward后内容缺失,翻译可能不够完整准确。

Synthesis and Biological Evaluation of Thiosemicarbazide Derivatives Endowed with High Activity toward .

作者信息

Sardari Soroush, Feizi Samaneh, Rezayan Ali Hossein, Azerang Parisa, Shahcheragh Seyyed Mohammad, Ghavami Ghazaleh, Habibi Azizollah

机构信息

Drug Design and Bioinformatics Unit, Medical Biotechnology Department, Biotechnoloogy Research Center, Pasteur Institute of Iran, Tehran, Iran.

Department of Life Science Engineering, Faculty of New Sciences & Technologies, University of Tehran, Tehran, Iran.

出版信息

Iran J Pharm Res. 2017 Summer;16(3):1128-1140.

Abstract

Thiosemicarbazides are potent intermediates for the synthesis of pharmaceutical and bioactive materials and thus, they are used extensively in the field of medicinal chemistry. The imine bond (-N=CH-) in this compounds are useful in organic synthesis, in particular for the preparation of heterocycles and non-natural β-aminoacids. In this paper the synthesis of some new thiosemicarbazide derivatives by condensation reaction of various aldehydes or ketones with 4-phenylthiosemicarbazide or thiosemicarbazide is reported. This synthesis method has the advantages of high yields and good bioactivity. The structures of these compounds were confirmed by IR, mass, H NMR, C NMR, and single-crystal X-ray diffraction studies. All of these compounds were tested for their anti-mycobacterial activity. The influence of the functional group and position of substituent on anti-bacterial activity of compounds is investigated too. The preliminary results indicated that all of the tested compounds showed good activity against the test organism. The compounds 11 and 30 showed the highest anti-tubercular activity (0.39 μg/mL). This synthesis method has the advantages of high yields and good bioactivity.

摘要

硫代氨基脲是合成药物和生物活性材料的有效中间体,因此,它们在药物化学领域得到广泛应用。该化合物中的亚胺键(-N=CH-)在有机合成中很有用,特别是用于制备杂环和非天然β-氨基酸。本文报道了通过各种醛或酮与4-苯基硫代氨基脲或硫代氨基脲的缩合反应合成一些新的硫代氨基脲衍生物。该合成方法具有产率高和生物活性好的优点。这些化合物的结构通过红外光谱、质谱、氢核磁共振、碳核磁共振和单晶X射线衍射研究得到证实。所有这些化合物都进行了抗分枝杆菌活性测试。还研究了官能团和取代基位置对化合物抗菌活性的影响。初步结果表明,所有测试化合物对受试生物体均表现出良好的活性。化合物11和30表现出最高的抗结核活性(0.39μg/mL)。该合成方法具有产率高和生物活性好的优点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86ac/5610766/a450704d5c95/ijpr-16-1128-g001.jpg

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