Monga Jyoti, Ghosh Niladry S, Rani Isha, Singh Ranjit, Deswal Geeta, Dhingra Ashwani K, Grewal Ajmer S
Adarsh Vijendra Institute of Pharmaceutical Sciences, Shobhit University, Gangoh, Uttar Pradesh, India.
Ch. Devi Lal College of Pharmacy, Jagadhri, Yamuna Nagar, Haryana, India.
Curr Top Med Chem. 2024;24(5):437-485. doi: 10.2174/0115680266283641240109080047.
Heterocyclic molecules have fascinated a massive interest in medicinal chemistry. They are heterocyclic compounds that have gained significance due to their diverse variety of pharmacological activities. Benzimidazole is a heterocyclic compound consisting of benzene and imidazole rings. The ease of synthesis and the structural versatility of benzimidazole make it a promising scaffold for drug development. Many biological actions of benzimidazole derivatives have been well documented, including antibacterial, antiviral, anticancer, anti-inflammatory, antitubercular, and anthelmintic properties. The mechanism of action of benzimidazole derivatives varies with their chemical structure and target enzyme. This review has explored numerous methods for producing benzimidazole derivatives as well as a broad range of pharmacological activities. SAR investigations are also discussed in this review as they provide crucial details regarding the essential structural qualities that benzimidazole derivatives must have in order to be biologically active, which could aid in the rational design of new drug candidates. Benzimidazole scaffold is an exclusive structure in drug design and discovery. Many new pharmaceutical drugs containing benzimidazole are anticipated to be available within the next ten years as a result of the extensive therapeutic applications of benzimidazole and its derivatives. This review inspired many researchers to develop more biologically active compounds bearing benzimidazole, expanding the scope of finding a remedy for other diseases. From this study, we concluded that 2-substituted benzimidazole was considered more extensively by researchers.
杂环分子在药物化学领域引起了广泛关注。它们是杂环化合物,因其多样的药理活性而具有重要意义。苯并咪唑是一种由苯环和咪唑环组成的杂环化合物。苯并咪唑易于合成且结构多样,使其成为药物开发的一个有前景的骨架。苯并咪唑衍生物的许多生物学作用已有充分记录,包括抗菌、抗病毒、抗癌、抗炎、抗结核和驱虫特性。苯并咪唑衍生物的作用机制因其化学结构和靶酶而异。本综述探讨了多种制备苯并咪唑衍生物的方法以及广泛的药理活性。本综述还讨论了构效关系研究,因为它们提供了关于苯并咪唑衍生物为具有生物活性所必须具备的基本结构特征的关键细节,这有助于合理设计新的候选药物。苯并咪唑骨架在药物设计与发现中是一种独特的结构。由于苯并咪唑及其衍生物广泛的治疗应用,预计在未来十年内会有许多含苯并咪唑的新药物上市。这篇综述激发了许多研究人员开发更多具有生物活性的含苯并咪唑化合物,扩大了寻找其他疾病治疗方法的范围。从这项研究中,我们得出结论,2-取代苯并咪唑受到了研究人员更广泛的关注。