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一些2-(N,N-二甲基胍基)-4,6-二芳基嘧啶的合成、表征及计算机模拟生物活性

Synthesis, characterization and in silico biological activity of some 2-(N,N-dimethyl guanidinyl)-4,6-diaryl pyrimidines.

作者信息

Kumarachari Rajasekhar Komarla, Peta Sivakumar, Surur Abdrrahman Shemsu, Mekonnen Yenus Tadesse

机构信息

Department of Pharmaceutical Chemistry, School of Pharmacy, College of Medicine and Health Sciences, University of Gondar, India.

Department of Pharmaceutical Chemistry, Gokula Krishna College of Pharmacy, Sullurpeta, Andhra Pradesh, India.

出版信息

J Pharm Bioallied Sci. 2016 Jul-Sep;8(3):181-7. doi: 10.4103/0975-7406.171678.

Abstract

INTRODUCTION

As pyrimidine is a basic nucleus in DNA and RNA, it has been found to be associated with diverse biological activities. Pyrimidine derivatives were reported to possess anticonvulsant, antimicrobial, anti-inflammatory, antitumor, and antihistaminic. Recently, our team reported the anti-inflammatory and antimicrobial evaluation of some pyrimidines.

OBJECTIVE

To synthesize, predict and evaluate biological activity of some 2-(N,N-dimethyl guanidinyl)-4,6-diaryl pyrimidines.

EXPERIMENTAL

seven new pyrimidines were synthesized by following the standard procedures using substituted aromatic aldehydes, methyl ketones and metformin. After the biological activity was predicted using PASS, Molinspiration and Osiris property explorer, their anthelmintic activity was evaluated using Pheretima posthuma. The structural assignment of the title compounds (P1-7) has been made on the basis of elemental analysis, infrared, 1H-nuclear magnetic resonance and Mass spectral studies.

RESULTS

All the synthesized compounds were found to obey Lipinski's rule. All the synthesized compounds scored good bioactivity values as GPCR ligands and kinase inhibitors. Among the test compounds, P5 was found to be more potent anthelmintic inducing paralysis in 36-48 minutes and death in 40-51 minutes.

CONCLUSION AND RECOMMENDATION

The synthesized compound (P5) possessing methoxy group at position-4 of the benzene ring located at position-4 of pyrimidine exhibited good anthelmintic activity. The study revealed the necessity of synthesizing many more compounds with other substituents at position-4 of the benzene ring located at position-4 of pyrimidine.

摘要

引言

由于嘧啶是DNA和RNA中的基本核,已发现它与多种生物活性相关。据报道,嘧啶衍生物具有抗惊厥、抗菌、抗炎、抗肿瘤和抗组胺作用。最近,我们的团队报道了一些嘧啶的抗炎和抗菌评估。

目的

合成、预测和评估一些2-(N,N-二甲基胍基)-4,6-二芳基嘧啶的生物活性。

实验

使用取代的芳香醛、甲基酮和二甲双胍,按照标准程序合成了七种新的嘧啶。在使用PASS、Molinspiration和Osiris性质探索器预测生物活性后,使用参环毛蚓评估它们的驱虫活性。根据元素分析、红外光谱、1H-核磁共振和质谱研究对标题化合物(P1-7)进行了结构归属。

结果

所有合成的化合物均符合Lipinski规则。所有合成的化合物作为GPCR配体和激酶抑制剂均获得了良好的生物活性值。在测试化合物中,发现P5是更有效的驱虫剂,在36-48分钟内引起麻痹,在40-51分钟内导致死亡。

结论与建议

在嘧啶4位苯环的4位具有甲氧基的合成化合物(P5)表现出良好的驱虫活性。该研究表明有必要合成更多在嘧啶4位苯环的4位带有其他取代基的化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b3e/4929956/a8d2abe11fb8/JPBS-8-181-g001.jpg

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