Synthesis and acute toxicity of new S-derivatives (1,2,4-triazole-3(2H)-yl)methyl) thiopyrimidines

Y. Karpenko, O. Panasenko, S. M. Kulish, A. Domnich
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Abstract

In the literature, there is insufficient information on the synthesis of compounds in a series of pyrimidine-2-thiol derivatives containing a five-membered nitrogen-containing heterocyclic fragment; at the same time, there are a sufficient number of examples, demonstrating the synthetic and biological potential for compounds of this kind. The relevance of the study “structure – acute toxicity” relationship in a number of newly synthesized derivatives of 1,2,4-triazole-3(2H)-thione with pyrimidine-2-thiol is due to the synthesis of potential low molecular weight interferon inducers and antitumor agents, the search for molecular descriptors of their structure, important for establishing “structure – acute toxicity” laws, as a system for evaluating the biological effects of compounds. Therefore, it is strategically and economically justified to conduct a study of the acute toxicity of synthesized compounds as a priority. The aim of the work is targeted synthesis of a number of S-derivatives (1,2,4-triazole-3(2H)-yl)methyl)thiopyrimidines and the establishment of the “structure – acute toxicity” relationship. Materials and methods. A modern set of physical-chemical research methods was used to study the compounds. The study of the acute toxicity of the synthesized compounds was performed on adult Danio rerio. During the experiments, the fish were kept on a diet for a test period of 96 hours, and their mortality was checked every 24, 48, 72 and 96 hours with the test compounds in each mini-aquarium containing at least 7 individuals of Danio rerio. Results. Results 1H NMR spectra confirm that the alkylation reaction occurs specifically on the sulfur atom. Thus, after analyzing LC50 data, we found that the least toxic among the studied compounds is 2-(((4-methyl-5-(octylthio)-4H-1,2,4-triazole-3-yl )methyl)thio)pyrimidine with an acute toxicity value of 49.66 mg/l. The most toxic compound is 2-(((4-methyl-5-(methylthio)-4H-1,2,4-triazole-3-yl)methyl)thio)pyrimidine with an LC50 value of 8.29 mg/l. The low toxicity of the compound 2-(((4-methyl-5-(octylthio)-4H-1,2,4-triazole-3-yl)methyl)thio)pyrimidine is most likely due to the presence of an octyl substituent, which sufficiently penetrates through biological membranes and does not have a strong toxic effect on organ systems. Furthermore, it does not accumulate but is metabolized in the cell. Conclusions. New hybrids of 1,2,4-triazole-3(2H)-yl)methyl)thiopyrimidines were obtained using the heterocyclization reaction of the intermediate carbothioamide. To reduce the indicators of acute toxicity and increase their biological activity, synthesized S-derivatives of this series were created. It was established that S-derivatives of 1,2,4-triazole-3(2H)-yl)methyl)thiopyrimidines belong to moderately toxic to low-toxic compounds according to the classification of D. R. Passino. 2-(((4-Methyl-5-(octylthio)-4H-1,2,4-triazole-3-yl)methyl)thio)pyrimidine has an acute toxicity value of 49.66 mg/l. The most toxic compound is 2-(((4-methyl-5-(methylthio)-4H-1,2,4-triazole-3-yl)methyl)thio)pyrimidine with an LC50 value of 8.29 mg/l.
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新型s -衍生物(1,2,4-三唑-3(2H)-酰基)甲基)硫代嘧啶的合成及急性毒性研究
在文献中,关于一系列含有五元含氮杂环片段的嘧啶-2-硫醇衍生物的化合物的合成信息不足;同时,有足够数量的实例,证明了这类化合物的合成和生物学潜力。研究一些新合成的1,2,4-三唑-3(2H)-硫酮与嘧啶-2-硫醇衍生物的“结构-急性毒性”关系的相关性是由于潜在的低分子量干扰素诱导剂和抗肿瘤药物的合成,寻找其结构的分子描述符对于建立“结构-急性毒性”规律,作为评价化合物生物效应的系统具有重要意义。因此,从战略上和经济上讲,将对合成化合物的急性毒性进行研究作为优先事项是合理的。本工作的目的是有针对性地合成若干s -衍生物(1,2,4-三唑-3(2H)-酰基)甲基)硫代嘧啶,并建立“结构-急性毒性”关系。材料和方法。一套现代的物理化学研究方法被用来研究这些化合物。对合成的化合物进行了对成年斑马鱼的急性毒性研究。试验期间,在每个不少于7尾的小型水族箱中,用试验化合物每隔24、48、72、96小时检测鱼的死亡率,试验期为96小时。结果核磁共振氢谱证实烷基化反应只发生在硫原子上。因此,通过分析LC50数据,我们发现所研究的化合物中毒性最小的是2-((4-甲基-5-(辛基硫))- 4h -1,2,4-三唑-3-酰基)甲基硫)嘧啶,急性毒性值为49.66 mg/l。毒性最大的化合物为2-((4-甲基-5-(甲基硫))- 4h -1,2,4-三唑-3-酰基)甲基硫)嘧啶,LC50值为8.29 mg/l。化合物2-((4-甲基-5-(辛基硫)- 4h -1,2,4-三唑-3-基)甲基)硫)嘧啶的低毒性很可能是由于辛基取代基的存在,它能充分穿透生物膜,对器官系统没有很强的毒性作用。此外,它不会积累,而是在细胞内代谢。利用中间碳硫酰胺的杂环化反应,得到了1,2,4-三唑-3(2H)-酰基)甲基)硫代嘧啶的新杂化合物。为了降低急性毒性指标,提高其生物活性,我们合成了该系列的s -衍生物。根据D. R. Passino的分类,确定了1,2,4-三唑-3(2H)-酰基)甲基)硫代嘧啶的s -衍生物属于中毒性至低毒化合物,2 -((4-甲基-5-(辛基硫))- 4h -1,2,4-三唑-3-酰基)甲基)硫代嘧啶的急性毒性值为49.66 mg/l。毒性最大的化合物为2-((4-甲基-5-(甲基硫))- 4h -1,2,4-三唑-3-酰基)甲基硫)嘧啶,LC50值为8.29 mg/l。
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