Department of Chemistry, Tshwane University of Technology, 175 Nelson Mandela Drive, Private Bag X680, Pretoria 0001, South Africa.
Department of Chemistry, United Arab Emirates University, Al-Ain 15551, United Arab Emirates.
Molecules. 2024 Jan 14;29(2):406. doi: 10.3390/molecules29020406.
Fatalities caused by infectious diseases (i.e., diseases caused by parasite, bacteria, and viruses) have become reinstated as a major public health threat globally. Factors such as antimicrobial resistance and viral complications are the key contributors to the death numbers. As a result, new compounds with structural diversity classes are critical for controlling the virulence of pathogens that are multi-drug resistant. Derivatization of bio-active organic molecules with organometallic synthons is a promising strategy for modifying the inherent and enhanced properties of biomolecules. Due to their redox chemistry, bioactivity, and structural diversity, organometallic moieties make excellent candidates for lead structures in drug development. Furthermore, organometallic compounds open an array of potential in therapy that existing organic molecules lack, i.e., their ability to fulfill drug availability and resolve the frequent succumbing of organic molecules to drug resistance. Additionally, metal complexes have the potential towards metal-specific modes of action, preventing bacteria from developing resistance mechanisms. This review's main contribution is to provide a thorough account of the biological efficacy (in vitro and in vitro) of metal-based complexes against infectious diseases. This resource can also be utilized in conjunction with corresponding journals on metal-based complexes investigated against infectious diseases.
传染病(即寄生虫、细菌和病毒引起的疾病)导致的死亡人数再次成为全球主要的公共卫生威胁。抗生素耐药性和病毒并发症等因素是导致死亡人数增加的主要原因。因此,具有结构多样性的新型化合物对于控制多药耐药病原体的毒力至关重要。用有机金属合成子对生物活性有机分子进行衍生化是修饰生物分子固有和增强性质的一种很有前途的策略。由于其氧化还原化学、生物活性和结构多样性,金属有机部分是药物开发中优秀的先导结构候选物。此外,有机金属化合物为治疗提供了一系列现有有机分子所缺乏的潜在可能性,例如它们能够满足药物的可获得性并解决有机分子经常对耐药性的屈服。此外,金属配合物具有针对特定金属的作用模式的潜力,可以防止细菌产生耐药机制。本综述的主要贡献在于全面描述了金属基配合物针对传染病的生物学功效(体外和体内)。该资源还可以与针对传染病研究的金属基配合物的相应期刊一起使用。