Treatment strategies for cryptococcal infection: challenges, advances and future outlook

盖蒂隐球菌 新生隐球菌 隐球菌病 隐球菌 生物 抗药性 抗真菌药 隐球菌性脑膜炎 抗真菌 疾病 免疫学 重症监护医学 微生物学 医学 人类免疫缺陷病毒(HIV) 内科学 病毒性疾病
作者
Kali R. Iyer,Nicole M. Revie,Ci Fu,Nicole Robbins,Leah E. Cowen
出处
期刊:Nature Reviews Microbiology [Nature Portfolio]
卷期号:19 (7): 454-466 被引量:247
标识
DOI:10.1038/s41579-021-00511-0
摘要

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.
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