Antimycotic Drugs and their Mechanisms of Resistance to Candida Species

白霉素类 抗真菌药 抗药性 抗真菌药 抗真菌 曲菌病 药品 侵袭性念珠菌病 生物 念珠菌感染 曲霉 棘白菌素 微生物学 两性霉素B 药理学 免疫学 氟康唑 卡斯波芬金
作者
Sajjan Dahiya,Namita Sharma,Aruna Punia,Pooja Choudhary,Prity Gulia,Virinder S. Parmar,Anil Kumar Chhillar
出处
期刊:Current Drug Targets [Bentham Science Publishers]
卷期号:23 (2): 116-125 被引量:8
标识
DOI:10.2174/1389450122666210719124143
摘要

Fungal infections have shown an upsurge in recent decades, which is mainly because of the increasing number of immunocompromised patients and the occurrence of invasive candidiasis has been found to be 7-15 fold greater than that of invasive aspergillosis. The genus Candida comprises more than 150 distinct species, however, only a few of them are found to be pathogenic to humans. Mortality rates of Candida species are found to be around 45% and the reasons for this intensified mortality are inefficient diagnostic techniques and unfitting initial treatment strategies. There are only a few antifungal drug classes that are employed for the remedy of invasive fungal infections. which include azoles, polyenes, echinocandins, and pyrimidine analogs. During the last 2-3 decades, the usage of antifungal drugs has increased several folds due to which the reports of escalating antifungal drug resistance have also been recorded. The resistance is mostly to the triazole- based compounds. Due to the occurrence of antifungal drug resistance, the success rates of treatment have been reduced as well as major changes have been observed in the frequency of fungal infections. In this review, we have summarized the major molecular mechanisms for the development of antifungal drug resistance.
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