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Sensing of oxygen in microtiter plates: a novel tool for screening drugs against pathogenic yeasts

机译:微量滴定板中的氧气感测:一种用于筛选抗病原酵母药物的新型工具

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Most antibiotics were discovered via their inhibition of growth of target organisms. However, yeasts in particular have the capability to adapt metabolic pathways to the availability of nutrients e.g. yeasts can easily switch between respiratory and fermentative pathways in response to oxygen concentration, or can even use both simultaneously. Thus, we cultivated S. cerevisiae BY4741 and C. albicans 1386 in microtiter plates with integrated oxygen sensors to characterize the availability of oxygen for the organisms and to detect influences of fungicides on the oxygen consumption rates. The relevance of the respiratory pathway was indicated by the almost total consumption of oxygen during the first 1–3 h of the cultivation in the microtiter plates, when an increase in turbidity could hardly be seen. Moreover, the sensitivity of S. cerevisiae to inhibitors of the respiratory chain, such as myxothiazol, could be detected via a reduced oxygen consumption rate, whereas no inhibition of growth was observed. Thus, not only was the sensitivity of the test organism for the test compound detectable, but the affected pathway was also highlighted. Other compounds, such as pyrrolnitrin and ambruticin VS-3, inhibited growth of C. albicans 1386 and of S. cerevisiae (only pyrrolnitrin), which was additionally observed as reduced oxygen consumption rates. Thus, the determination of oxygen in microtiter plates via fluorescent dyes is a versatile supplement to standard growth inhibition tests.
机译:大多数抗生素是通过抑制目标生物的生长而发现的。然而,酵母尤其具有使代谢途径适应营养物例如酵母的可用性的能力。酵母可以根据氧气浓度在呼吸和发酵途径之间轻松切换,甚至可以同时使用。因此,我们在带有集成氧传感器的微量滴定板中培养了酿酒酵母BY4741和白色念珠菌1386,以表征生物体的氧气供应量并检测杀真菌剂对氧气消耗率的影响。在微量滴定板中培养的最初1至3小时内,氧气的几乎总消耗量表明了呼吸路径的相关性,而此时几乎看不到浊度的增加。此外,酿酒酵母对呼吸链抑制剂(如噻虫唑)的敏感性可通过降低的耗氧率来检测,而未观察到生长的抑制。因此,不仅可以检测到测试生物对于测试化合物的敏感性,而且还突出了受影响的途径。其他化合物,例如吡咯硝菌素和ambrutticin VS-3,抑制白色念珠菌1386和酿酒酵母(仅吡咯菌素)的生长,此外还观察到降低了耗氧率。因此,通过荧光染料测定微量滴定板中的氧气是对标准生长抑制测试的多功能补充。

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