Al Akiki Dit Al Mazraani Rizkallah, Malys Naglis, Maliene Vida
Bioprocess Research Centre, Faculty of Chemical Technology, Kaunas University of Technology Radvilėnų st. 19 Kaunas LT-50254 Lithuania.
Department of Organic Chemistry, Faculty of Chemical Technology, Kaunas University of Technology Radvilėnų st. 19 Kaunas LT-50254 Lithuania
RSC Adv. 2025 Feb 10;15(6):4408-4420. doi: 10.1039/d4ra08298b. eCollection 2025 Feb 6.
Pathogenic microorganisms and viruses cause outbreaks and pandemics that affect millions of people worldwide. Despite recent advances in pharmacology and medicine, the ability of infectious diseases to spread in the modern era is accelerating due to various factors contributing to increased human-to-human and human-animal contacts. With the global rise of drug resistance among pathogens and frequently occurring viral outbreaks, alternative drugs and therapies that specifically inhibit microbial virulence or regulate immune responses are attracting growing interest. The present review focuses on itaconate and its derivatives as potential anti-pathogenic agents. It summarizes the current state of research on itaconate metabolism in bacteria, fungi and mammals. This is followed by a comprehensive review of recent advances studying itaconate and its derivatives as anti-inflammatory, immunoregulatory, antimicrobial and antiviral compounds, along with their mechanisms of action. Finally, the review emphasises the existing challenges and future research directions for the application of itaconate and its derivatives as anti-pathogenic agents.
病原微生物和病毒引发的疫情和大流行影响着全球数百万人。尽管药理学和医学最近取得了进展,但由于各种因素导致人与人之间以及人与动物之间的接触增加,传染病在现代的传播能力正在加速。随着病原体耐药性在全球范围内的上升以及病毒爆发频繁发生,专门抑制微生物毒力或调节免疫反应的替代药物和疗法正引起越来越多的关注。本综述重点关注衣康酸及其衍生物作为潜在的抗病原体药物。它总结了目前关于衣康酸在细菌、真菌和哺乳动物中代谢的研究现状。随后全面综述了最近将衣康酸及其衍生物作为抗炎、免疫调节、抗菌和抗病毒化合物的研究进展,以及它们的作用机制。最后,该综述强调了将衣康酸及其衍生物作为抗病原体药物应用时存在的挑战和未来的研究方向。