首页> 美国卫生研究院文献>Antimicrobial Agents and Chemotherapy >Use of a Bioluminescent Pseudomonas aeruginosa Strain within an In Vitro Microbiological System as a Model of Wound Infection To Assess the Antimicrobial Efficacy of Wound Dressings by Monitoring Light Production
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Use of a Bioluminescent Pseudomonas aeruginosa Strain within an In Vitro Microbiological System as a Model of Wound Infection To Assess the Antimicrobial Efficacy of Wound Dressings by Monitoring Light Production

机译:在体外微生物系统中使用生物发光的铜绿假单胞菌菌株作为伤口感染的模型通过监测光的产生来评估伤口敷料的抗菌功效

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摘要

A bioluminescent Pseudomonas aeruginosa was incorporated into an in vitro static diffusion method to determine whether light output could be used as a measure of wound dressing efficacy. A significant linear correlation was observed between viable counts and bioluminescence during exponential growth in planktonic culture (r2 = 0.969). Exponential-phase cells were used to inoculate cellulose discs for integration into an in vitro wound model that incorporated a reservoir of serum. A significant linear correlation was found between bioluminescence (photon counts monitored by a low-light camera) and viable counts in this growth environment (r2 = 0.982). Three antimicrobial wound dressings were applied to the surface of freshly prepared sample discs within the wound model, and the kill kinetics were codetermined by photon and viable counts. Quantifiable kill rates gave the same order of efficacy for the three wound dressings using both types of measurement, and a significant linear correlation was shown between photon and viable counts (r2 = 0.873) within this killing environment. Under all defined conditions, a significant linear correlation between bioluminescence and viable counts was shown but the actual slope of the correlation was different, depending on the physicochemical environment of the cells. Hence, significantly more light per cell (P < 0.0001) was produced when cells in discs were exposed to a killing environment compared to a growing environment. As long as defined conditions are employed, the resulting linear correlation enables the state of the system to be continually monitored without disturbance, allowing more immediate and accurate calculations of kill rates without the need for viable counting.
机译:将一种生物发光的铜绿假单胞菌(Pseudomonas aeruginosa)纳入体外静态扩散方法,以确定是否可以将光输出用作伤口包扎功效的量度。浮游培养指数生长过程中,活菌计数与生物发光之间存在显着的线性相关性(r 2 = 0.969)。指数相细胞用于接种纤维素圆盘,以整合入合并了血清库的体外伤口模型中。发现在这种生长环境中,生物发光(由低光相机监控的光子计数)与可行计数之间存在显着的线性相关性(r 2 = 0.982)。将三种抗菌伤口敷料应用于伤口模型中新制备的样品盘的表面,并通过光子和活菌计数共同确定杀灭动力学。使用这两种类型的测量方法,可量化的杀灭率使三种伤口敷料具有相同的功效等级,并且在这种杀灭环境下,光子与活菌计数之间存在显着的线性相关性(r 2 = 0.873)。在所有定义的条件下,显示了生物发光与存活计数之间的显着线性相关性,但相关性的实际斜率不同,具体取决于细胞的物理化学环境。因此,与生长环境相比,当圆盘中的细胞暴露于杀伤环境时,每个细胞产生的光明显更多(P <0.0001)。只要采用定义的条件,所得到的线性相关性就可以连续监视系统状态而不会造成干扰,从而无需进行可行的计数即可更迅速,更准确地计算出杀伤率。

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