Ullah Malik A, Adeel Muhammad, Tahir Muhammad N, Rauf Abdur, Akram Muhammad, Hadda Taibi B, Mabkhot Yahia N, Muhammad Naveed, Naseer Fehmida, Mubarak Mohammad S
Institute of Chemical Sciences, Gomal University, D.I. Khan, KPK. Pakistan.
Department of Physics, Sargodha University, Sargodha, Punjab. Pakistan.
Med Chem. 2017;13(8):780-786. doi: 10.2174/1573406413666170704100611.
The quinoline ring system is one of the most commonly encountered heterocycles in medicinal chemistry, due to the pharmaceutical and medicinal uses of derivatives containing this ring. These quinoline-based compounds have remarkable biological activity, as they are employed as antimalarial, antibacterial, antifungal, and antitumor agents. The quinoline nucleus can be synthesized by various traditional methods such as the Skraup reaction, Friedlaender synthesis, Combes quinoline synthesis, Larock quinoline synthesis, among others.
The aim of the present work is to synthesize a number of new arylated quninolines having significant antinoceciptive effect through the Suzuki-Miyaura cross coupling reaction using 3- bromoquinoline as a starting material.
A number of new quinoline derivatives have been synthesized. Structures of the newly synthesized compounds were confirmed by means of IR, NMR, and mass spectrometry, and by elemental analysis. In addition, the molecular structures of two representative derivatives were determined with the aid of X-ray crystallography. Additionally, the antinociceptive activity of the prepared compounds was evaluated in vivo; results revealed that most of the tested compounds exhibited a dosedependent antinociceptive effect.
Prepared compounds were found to exhibit significant antinociceptive activities and could be used as potential analgesic agents. Further work, however, may be required to establish the safety and efficacy of these compounds.
喹啉环系是药物化学中最常见的杂环之一,这归因于含有该环的衍生物在制药和医学上的用途。这些基于喹啉的化合物具有显著的生物活性,因为它们被用作抗疟、抗菌、抗真菌和抗肿瘤药物。喹啉核可以通过各种传统方法合成,如Skraup反应、Friedlaender合成、Combes喹啉合成、Larock喹啉合成等。
本研究的目的是使用3-溴喹啉作为起始原料,通过铃木-宫浦交叉偶联反应合成一系列具有显著抗伤害感受作用的新型芳基化喹啉。
合成了多种新型喹啉衍生物。通过红外光谱、核磁共振光谱、质谱和元素分析确定了新合成化合物的结构。此外,借助X射线晶体学确定了两种代表性衍生物的分子结构。此外,在体内评估了所制备化合物的抗伤害感受活性;结果表明,大多数测试化合物表现出剂量依赖性抗伤害感受作用。
发现所制备的化合物具有显著的抗伤害感受活性,可作为潜在的镇痛剂。然而,可能需要进一步的研究来确定这些化合物的安全性和有效性。