Department of Pharmaceutical Sciences, Dr. Harisingh Gour Vishwavidyalaya, Sagar, M.P., India.
Department of Pharmaceutical Sciences, Dr. Harisingh Gour Vishwavidyalaya, Sagar, M.P., India; Amity Institute of Pharmacy, Amity University, Gwalior, M.P., India.
Microbiol Res. 2024 Jan;278:127517. doi: 10.1016/j.micres.2023.127517. Epub 2023 Oct 12.
Fungal diseases today represent a world-wide problem. Poor hygiene and decreased immunity are the main reasons behind the manifestation of this disease. After COVID-19, an increase in the rate of fungal infection has been observed in different countries. Different classes of antifungal agents, such as polyenes, azoles, echinocandins, and anti-metabolites, as well as their combinations, are currently employed to treat fungal diseases; these drugs are effective but can cause some side effects and toxicities. Therefore, the identification and development of newer antifungal agents is a current need. The fungal cell comprises many lipids, such as ergosterol, phospholipids, and sphingolipids. Ergosterol is a sterol lipid that is only found in fungal cells. Various pathways synthesize all these lipids, and the activities of multiple enzymes govern these pathways. Inhibiting these enzymes will ultimately impede the lipid synthesis pathway, and this phenomenon could be a potential antifungal therapy. This review will discuss various lipid synthesis pathways and multiple antifungal agents identified as having fungal lipid synthesis inhibition activity. This review will identify novel compounds that can inhibit fungal lipid synthesis, permitting researchers to direct further deep pharmacological investigation and help develop drug delivery systems for such compounds.
如今,真菌病是一个全球性的问题。卫生条件差和免疫力下降是这种疾病表现的主要原因。继 COVID-19 之后,不同国家的真菌感染率有所上升。目前,使用了多种抗真菌药物,如多烯类、唑类、棘白菌素类和抗代谢物及其组合,来治疗真菌病;这些药物虽然有效,但可能会引起一些副作用和毒性。因此,识别和开发新型抗真菌药物是当前的需求。真菌细胞包含许多脂质,如麦角固醇、磷脂和鞘脂。麦角固醇是一种甾醇脂质,仅存在于真菌细胞中。所有这些脂质都是通过多种途径合成的,并且这些途径的多个酶的活性控制着这些途径。抑制这些酶最终会阻碍脂质合成途径,这种现象可能是一种潜在的抗真菌治疗方法。本文综述了各种脂质合成途径和已被确定具有抑制真菌脂质合成活性的多种抗真菌药物。本文综述了可抑制真菌脂质合成的新型化合物,这将使研究人员能够进一步深入研究药理学,并有助于开发此类化合物的药物输送系统。