耳念珠菌对棘白菌素的耐受性和异耐药性:概念问题、临床意义和悬而未决的问题。

IF 3.1 2区 生物学 Q2 MICROBIOLOGY
mSphere Pub Date : 2025-05-27 Epub Date: 2025-04-16 DOI:10.1128/msphere.00161-25
Erika Shor, David S Perlin, Dimitrios P Kontoyiannis
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引用次数: 0

摘要

由于其环境持久性和多药耐药性,耳念珠菌是一个重大的公共卫生威胁,棘白菌素是首选的治疗方法。然而,除了耐药性之外,棘白菌素耐受性和异源耐药性也可能导致治疗挑战。棘白菌素耐受涉及减少药物介导的杀伤,而异源耐药是小细胞亚群在高浓度药物下生长的能力。这些现象可能促进完全耐药的出现,使临床结果复杂化。这些机制的临床意义尚不清楚,与治疗失败相关的数据有限。需要进行研究,以了解其机制和影响,制定精简和可靠的方法,在临床环境中检测它们,并探索缓解战略。病原体的药物适应范围需要创新的方法,如空间转录组学来解剖这些复杂的反应并改善患者的治疗效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tolerance and heteroresistance to echinocandins in Candida auris: conceptual issues, clinical implications, and outstanding questions.

Candida auris is a significant public health threat due to its environmental persistence and multidrug resistance, with echinocandins being the preferred treatment. However, in addition to resistance, echinocandin tolerance and heteroresistance may contribute to treatment challenges. Echinocandin tolerance involves reduced drug-mediated killing, while heteroresistance is the ability of a small cell subset to grow at high drug concentrations. These phenomena may facilitate the emergence of full resistance and complicate clinical outcomes. The clinical significance of these mechanisms remains unclear, with limited data correlating them with treatment failures. Research is needed to understand their mechanisms and impact, develop streamlined and robust methods to detect them in clinical settings, and explore mitigation strategies. The pathogen's range of drug adaptations demands innovative approaches like spatial transcriptomics to dissect these complex responses and improve patient outcomes.

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来源期刊
mSphere
mSphere Immunology and Microbiology-Microbiology
CiteScore
8.50
自引率
2.10%
发文量
192
审稿时长
11 weeks
期刊介绍: mSphere™ is a multi-disciplinary open-access journal that will focus on rapid publication of fundamental contributions to our understanding of microbiology. Its scope will reflect the immense range of fields within the microbial sciences, creating new opportunities for researchers to share findings that are transforming our understanding of human health and disease, ecosystems, neuroscience, agriculture, energy production, climate change, evolution, biogeochemical cycling, and food and drug production. Submissions will be encouraged of all high-quality work that makes fundamental contributions to our understanding of microbiology. mSphere™ will provide streamlined decisions, while carrying on ASM''s tradition for rigorous peer review.
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