Madaan Alka, Verma Ritu, Kumar Vivek, Singh Anu T, Jain Swatantra K, Jaggi Manu
Cell Biology Lab, Dabur Research Foundation, Sahibabad, Ghaziabad, Uttar Pradesh, India.
Chemical Research Lab, Dabur Research Foundation, Sahibabad, Ghaziabad, Uttar Pradesh, India.
Arch Pharm (Weinheim). 2015 Dec;348(12):837-60. doi: 10.1002/ardp.201500237. Epub 2015 Nov 9.
The 1,8-naphthyridine group of compounds have gained special attention of researchers on account of their demonstrating a variety of interesting biological activities. A wide range of biological properties establishes them as potent scaffolds in therapeutic and medicinal research. The broad spectrum of activities primarily includes antimicrobial, antiviral, anticancer, anti-inflammatory, and analgesic activities. 1,8-Naphthyridine derivatives have also exhibited potential applications in neurological disorders such as Alzheimer's disease, multiple sclerosis, and depression. In addition, these synthetic derivatives have been found to possess activities such as anti-osteoporotic (α(v)β(3) antagonists), anti-allergic, antimalarial, gastric antisecretory, bronchodilator, anticonvulsant, anti-hypertensive, platelet aggregation inhibition, anti-oxidant, EGFR inhibition, protein kinase inhibition, ionotropic agent, β-3 antagonist, MDR modulator, adenosine receptor agonist, adrenoceptor antagonist, and pesticide activities. In spite of the widespread application of the 1,8-naphythyridine scaffolds, only a limited number of review articles are available till date. In this review, we attempt to compile and discuss the key data available in the literature for the multiple biological activities of 1,8-naphthyridine derivatives, in a chronological manner. This review compilation (with 199 references) may be helpful in understanding the diverse biological properties of 1,8-naphthyridines and provide insights into their mechanism of action. This may direct future research in the synthesis of new derivatives and exploring this scaffold for other possible biological activities.
1,8-萘啶类化合物因其展现出多种有趣的生物活性而受到研究人员的特别关注。广泛的生物学特性使其成为治疗和药物研究中强有力的骨架结构。这些活性主要包括抗菌、抗病毒、抗癌、抗炎和镇痛活性。1,8-萘啶衍生物在神经疾病如阿尔茨海默病、多发性硬化症和抑郁症中也展现出潜在应用。此外,已发现这些合成衍生物具有抗骨质疏松(α(v)β(3)拮抗剂)、抗过敏、抗疟疾、胃抗分泌、支气管扩张、抗惊厥、抗高血压、血小板聚集抑制、抗氧化、表皮生长因子受体(EGFR)抑制、蛋白激酶抑制、离子型药物、β-3拮抗剂、多药耐药(MDR)调节剂、腺苷受体激动剂、肾上腺素能受体拮抗剂以及农药活性等。尽管1,8-萘啶骨架结构应用广泛,但迄今为止仅有数量有限的综述文章。在本综述中,我们试图按时间顺序汇编并讨论文献中有关1,8-萘啶衍生物多种生物活性的关键数据。本综述汇编(有199篇参考文献)可能有助于理解1,8-萘啶的多样生物学特性,并为其作用机制提供见解。这可能会指导未来新型衍生物合成的研究以及探索该骨架结构的其他可能生物活性。