嘧啶衍生物的多种生物活性研究进展

Anjali, Sumitra Nain
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引用次数: 0

摘要

目前,广泛的芳香族杂环化合物被用作治疗药物。其中,嘧啶是一种众所周知的原子核,在六元环的第一和第三位有两个氮原子,化学式为C4H4N2。1885年,一位名叫平纳(Pinner)的物理学家创造了嘧啶(pyridine)这个词,这个词来源于“吡啶”(pyridine)和“脒”(amidine)。嘧啶及其取代基具有多种药理和生物学特性。研究、药物发现和筛选利用了这种化学物质的潜力。文献证明,含嘧啶的化合物具有抗高血压、抗菌、抗炎、抗疟疾、抗组胺、镇静和催眠、抗癌和抗人类免疫缺陷病毒(HIV)等显著的治疗特性。谷歌、谷歌Scholar、ResearchGate和ScienceDirect等搜索引擎被用来获取信息。在未来,除了有助于药物设计和开发嘧啶衍生物作为治疗药物外,本文还对嘧啶生成的化合物的不同生物学反应提供了深入的了解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diverse Biological Activity of Pyrimidine Derivatives: A Review.

Nowadays, a wide range of aromatic heterocyclic compounds are employed as therapeutics. Among these, pyrimidine is a well-known nucleus with two nitrogen atoms at the first and third positions of six-membered rings, with the chemical formula C4H4N2. In 1885, a physicist named Pinner coined the term "pyrimidine," which originates from "pyridine" and "amidine." Pyrimidine and its substituents have a variety of pharmacological and biological features. Research, drug discovery, and screening utilise the potential of this chemical substance. Significant therapeutic features such as antihypertensive, antimicrobial, anti-inflammatory, antimalarial, antihistaminic, sedatives and hypnotics, anticancer, and anti-human immunodeficiency virus (HIV) can be seen in the pyrimidine- containing compounds, as demonstrated by the literature. Search engines like Google, Google Scholar, ResearchGate, and ScienceDirect were used to obtain the information. In the future, in addition to helping with drug design and the development of pyrimidine derivatives as therapeutic drugs, this review paper offers insight into the different biological responses of compounds generated from pyrimidine.

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