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High-Throughput Yeast Aging Analysis for Cryptococcus (HYAAC) microfluidic device streamlines aging studies in Cryptococcus neoformans

机译:隐球菌(HYAAC)微流控设备的高通量酵母老化分析简化了新型隐球菌的老化研究

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摘要

Cryptococcus neoformans (Cn) is a deadly fungal pathogen responsible for ~ 180,000 deaths per year and despite effective antifungals, treatment failure and resistance to antifungals are increasingly problematic. Aging and age-related phenotypes are prominent virulence traits that contribute to the resilience of Cn to host responses and antifungals. Traditional methods to study aging in Cn are expensive, inefficient and in need of improvement. Here, we demonstrate the development and use of a High-Throughput Yeast Aging Analysis for Cryptococcus (HYAAC) microfluidic device to better study aging and age-associated genes in Cn. Compared to traditional methods, the HYAAC is superior in its efficiency to isolate, manipulate and observe old cells for analysis. It allows for the trapping and tracking of individual cells over the course of their lifespan, allowing for more precise measurements of lifespan, tracking of age-related phenotypes with age, and a more high-throughput ability to investigate genes associated with aging.
机译:新型隐球菌(Cn)是一种致命的真菌病原体,每年导致约180,000例死亡,尽管使用了有效的抗真菌剂,但治疗失败和对抗真菌剂的耐药性日益成为问题。衰老和与年龄有关的表型是突出的毒力特征,有助于Cn适应宿主的反应和抗真菌。研究Cn中老化的传统方法昂贵,效率低下并且需要改进。在这里,我们演示了隐球菌(HYAAC)微流控设备的高通量酵母老化分析技术的开发和使用,以更好地研究Cn中的衰老和与年龄相关的基因。与传统方法相比,HYAAC在分离,操作和观察旧细胞进行分析方面具有更高的效率。它允许在单个细胞的整个生命周期中进行捕获和跟踪,从而可以更精确地测量寿命,随年龄跟踪与年龄相关的表型,并具有更高的研究与衰老相关的基因的通量。

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