Department of Molecular Genetics, University of Toronto, Toronto, Ontario, Canada.
Nat Rev Microbiol. 2021 Jul;19(7):454-466. doi: 10.1038/s41579-021-00511-0. Epub 2021 Feb 8.
Cryptococcus spp., in particular Cryptococcus neoformans and Cryptococcus gattii, have an enormous impact on human health worldwide. The global burden of cryptococcal meningitis is almost a quarter of a million cases and 181,000 deaths annually, with mortality rates of 100% if infections remain untreated. Despite these alarming statistics, treatment options for cryptococcosis remain limited, with only three major classes of drugs approved for clinical use. Exacerbating the public health burden is the fact that the only new class of antifungal drugs developed in decades, the echinocandins, displays negligible antifungal activity against Cryptococcus spp., and the efficacy of the remaining therapeutics is hampered by host toxicity and pathogen resistance. Here, we describe the current arsenal of antifungal agents and the treatment strategies employed to manage cryptococcal disease. We further elaborate on the recent advances in our understanding of the intrinsic and adaptive resistance mechanisms that are utilized by Cryptococcus spp. to evade therapeutic treatments. Finally, we review potential therapeutic strategies, including combination therapy, the targeting of virulence traits, impairing stress response pathways and modulating host immunity, to effectively treat infections caused by Cryptococcus spp. Overall, understanding of the mechanisms that regulate anti-cryptococcal drug resistance, coupled with advances in genomics technologies and high-throughput screening methodologies, will catalyse innovation and accelerate antifungal drug discovery.
隐球菌属,尤其是新型隐球菌和格特隐球菌,对全球人类健康有着巨大的影响。全球每年有近 25 万例 cryptococcal 脑膜炎病例和 18.1 万例死亡,若不进行治疗,感染的死亡率为 100%。尽管这些数据令人震惊,但隐球菌病的治疗选择仍然有限,只有三类主要的药物被批准用于临床使用。更糟糕的是,几十年来唯一开发的一类新的抗真菌药物——棘白菌素类,对隐球菌属的抗真菌活性可忽略不计,而其余治疗药物的疗效受到宿主毒性和病原体耐药性的阻碍。在这里,我们描述了现有的抗真菌药物和用于治疗隐球菌病的治疗策略。我们进一步阐述了我们对隐球菌属利用内在和适应性耐药机制来逃避治疗的理解的最新进展。最后,我们回顾了潜在的治疗策略,包括联合治疗、靶向毒力特征、抑制应激反应途径和调节宿主免疫,以有效治疗隐球菌属引起的感染。总的来说,对调节抗隐球菌药物耐药性的机制的理解,加上基因组技术和高通量筛选方法的进步,将推动创新并加速抗真菌药物的发现。