首页> 外文期刊>Chemistry Select >Identification of 1,3-(Dimethyl / Propyl)-8-Susbtituted (Cinnamic acid/Furan) Xanthine Derivatives with Anti-bronchospasmodic Activity Using in silico and in vivo Techniques
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Identification of 1,3-(Dimethyl / Propyl)-8-Susbtituted (Cinnamic acid/Furan) Xanthine Derivatives with Anti-bronchospasmodic Activity Using in silico and in vivo Techniques

机译:使用在硅和体内技术中鉴定1,3-(二甲基 /丙基)-8-susbtited(肉桂酸 /呋喃)黄氨酸衍生物具有抗胆红杂相的衍生物

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摘要

Asthma is a chronic obstructive pulmonary disease which affects the bronchi airways and results in the inflammation of bronchioles along with the hyper-responsiveness to some direct or indirect stimuli which leads to bronchoconstriction. Substituted xanthines have provided several lead compounds for the development of antiasthmatic agents over the decades. In this present paper, a series of 42 xanthine based derivatives (17a-g; 18a-g; 19a-g; 20a-g; 28a-g and 29a-g) were designed and synthesized. Chemical structures were elucidated by spectroscopic methods. All target compounds were evaluated for their in silico anti-bronchospasmodic potential using PASS software. Compounds with >95% potential (18c-f; 28a and 29a-g) in comparison to the standard drug were selected for in vivo bronchospasmodic activity using histamine chamber model. In silico and in vivo activity revealed that the compounds substituted with furan spacer were more active than the cinnamic acid. Substitution with propyl functionality at 1-and 3-position of xanthine moiety is also accounted for the enhanced activity of furan derivatives (29a-g). In conclusion, the synthesized new xanthine derivatives stands out as promising anti-bronchospasmodic agents for future development.
机译:哮喘是一种慢性阻塞性肺部疾病,会影响支气管气道,并导致细支气管炎症以及对某些直接或间接刺激的超反应性,从而导致支气管合收缩。替代的黄嘌呤为几十年来的抗臭虫的发展提供了几种铅化合物。在本文中,设计和合成了一系列42个基于黄嘌呤的衍生物(17a-g; 18a-g; 19a-g; 20a-g; 20a-g; 28a-g和29a-g)。通过光谱法阐明了化学结构。使用PASS软件评估了所有目标化合物的硅抗杂波痉挛势。与标准药物相比,使用组胺腔室模型选择了与标准药物相比,具有> 95%电势(18C-F; 28a和29a-g)的化合物。在硅和体内活性中,表明用呋喃垫片取代的化合物比肉桂酸更活跃。在1和3位的黄氨酸部分的替代功能还可以增强呋喃衍生物的活性(29a-g)。总之,合成的新黄嘌呤衍生物脱颖而出,是未来开发的有前途的抗胆汁杂波杂质剂。

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  • 来源
    《Chemistry Select》 |2022年第17期|共7页
  • 作者单位

    Department of Pharmacy, Faculty of Life Sciences, Banasthali Vidyapith, Banasthali-304022, India;

    University Institute of Pharma Sciences, Chandigarh University, Gharuan (Mohali)-140413, India;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
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