Kumar Gautam, Adhikrao Patil Amruta
Department of Natural Products, Chemical Sciences, National Institute of Pharmaceutical Education and Research-Hyderabad (NIPER-Hyderabad) Balanagar Hyderabad 500037 India
RSC Med Chem. 2023 Sep 6;14(10):1885-1913. doi: 10.1039/d3md00201b. eCollection 2023 Oct 18.
Among the various bacterial infections, tuberculosis (TB) remains a life-threatening infectious disease responsible as the most significant cause of mortality and morbidity worldwide. The co-infection of human immunodeficiency virus (HIV) in association with TB burdens the healthcare system substantially. Notably, possesses defence against most antitubercular antibiotic drugs, and the efficacy of existing frontline anti-TB drugs is waning. Also, new and recurring cases of TB from resistant bacteria such as multidrug-resistant TB (MDR), extensively drug-resistant TB (XDR), and totally drug-resistant TB (TDR) strains are increasing. Hence, TB begs the scientific community to explore the new therapeutic class of compounds with their novel mechanism. requires iron from host cells to sustain, grow, and carry out several biological processes. has developed strategic methods of acquiring iron from the surrounding environment. In this communication, we discuss an overview of iron-scavenging tools. Also, we have summarized recently identified and inhibitors, which prevent from scavenging iron. These iron-scavenging tool inhibitors have the potential to be developed as anti-TB agents/drugs.
在各种细菌感染中,结核病(TB)仍然是一种危及生命的传染病,是全球范围内导致死亡和发病的最重要原因。人类免疫缺陷病毒(HIV)与结核病的合并感染给医疗系统带来了沉重负担。值得注意的是,(此处原文缺失关键主体)对大多数抗结核抗生素药物具有耐药性,并且现有一线抗结核药物的疗效正在减弱。此外,耐多药结核病(MDR)、广泛耐药结核病(XDR)和完全耐药结核病(TDR)菌株等耐药细菌导致的结核病新发病例和复发病例正在增加。因此,结核病促使科学界探索具有新作用机制的新型化合物治疗类别。(此处原文缺失关键主体)需要从宿主细胞获取铁来维持生存、生长并进行多种生物学过程。(此处原文缺失关键主体)已经开发出从周围环境获取铁的策略方法。在本交流中,我们讨论了(此处原文缺失关键主体)铁清除工具的概述。此外,我们总结了最近鉴定出的(此处原文缺失关键主体)和(此处原文缺失关键主体)抑制剂,它们可阻止(此处原文缺失关键主体)清除铁。这些铁清除工具抑制剂有可能被开发成为抗结核药物。