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Studies on the inactivation of medically important Candida species on agar surfaces using pulsed light

机译:使用脉冲光灭活琼脂表面上医学上重要的念珠菌物种的研究

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Development of a pulsed-light (PL) approach to inanimate surface decontamination is timely, as the incidence of yeast-related infections in healthcare remains unacceptably high. Critical electrical and biological factors governing the efficacy of PL for the in vitro inactivation of medically important yeast were established in this study. Predetermined cell numbers of yeast were inoculated separately on agar plates and were flashed with [less-than or equal to]90 pulses of broad-spectrum light under varying operating conditions, and their inactivation was measured. Significant differences in inactivation among different yeasts occurred depending on the intensity of the applied lamp discharge energy and the amount of pulsing applied. Levels of yeast sensitivity also varied depending on the distance between the light source and the treatment surface used, and the population size, type and age of cultures treated. Yeast strains were shown to be significantly more resistant to PL irradiation compared with similarly treated bacterial control cultures. A clear relationship was observed between the concentration of eluted proteins from treated yeast and the severity of PL conditions, with scanning electron micrographs showing irreversible cellular damage. Therefore, the findings from this study will enable further development and optimization of PL as a method of decontaminating surfaces in healthcare setting.
机译:由于医疗保健中与酵母相关的感染发生率仍然高得令人无法接受,因此开发无生命表面净化的脉冲光(PL)方法是及时的。在这项研究中,建立了重要的电和生物学因素,这些因素决定了PL在体外对医学上重要的酵母的灭活作用。将预定的酵母细胞数分别接种在琼脂平板上,并在不同的操作条件下用小于或等于90个脉冲的广谱光闪烁,并测量其失活。取决于所施加的灯放电能量的强度和所施加的脉冲的数量,不同酵母之间在灭活方面发生了显着差异。酵母敏感性的水平也根据光源与所用处理表面之间的距离以及所处理培养物的种群大小,类型和年龄而变化。与相似处理的细菌对照培养物相比,酵母菌株显示出对PL辐射的抗性显着增强。观察到从处理过的酵母中洗脱的蛋白质的浓度与PL条件的严重程度之间存在明确的关系,而扫描电子显微照片显示出不可逆的细胞损伤。因此,这项研究的结果将使PL的进一步开发和优化成为在医疗机构中净化表面的一种方法。

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