首页> 外文期刊>Journal of Pharmacy and Pharmacology >Development of an in-vitro model to study the growth characteristics of Staphylococcus epidermidis in continuous ambulatory peritoneal dialysis.
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Development of an in-vitro model to study the growth characteristics of Staphylococcus epidermidis in continuous ambulatory peritoneal dialysis.

机译:体外模型研究连续车身腹膜透析中葡萄球菌椎板的生长特性。

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摘要

An in-vitro model of peritonitis in continuous ambulatory peritoneal dialysis (CAPD) has been developed which integrates the parameters of environmental gaseous tension, the changing biochemical profile of the dialysate, and the periodic challenge of fresh fluid. Dwell times of 4 h during the day and 10 h at night were used to reflect the in-vivo situation. Biochemical analysis of dialysate within the model showed that the profiles for creatinine, glucose and protein approximated those found in patients. Staphylococcus epidermidis growing in synthetic dialysis effluent or pooled dialysis fluid were seen to adapt rapidly to the environment after an initial lag phase; a tendency to aggregate together increased over the 50-h period of operation. In conclusion, the results presented here suggest that this in-vitro model creates an environment which is reflective of the in-vivo situation and therefore has potential for the study of peritonitis in CAPD.
机译:已经开发了连续的动态腹膜透析(CAPD)在连续的车身腹膜透析(CAPD)中的体外模型,其集成了环境气态张力的参数,透析液的改变的生化概况,以及新鲜流体的周期性挑战。 白天4小时的停留时间和晚上10小时用于反映体内情况。 模型内透析液的生化分析表明,肌酐,葡萄糖和蛋白质的曲线近似于患者中的那些。 在初始滞后阶段之后,观察到在合成透析流出物或合并透析流体中生长的葡萄球菌椎体肌肌瘤或合并透析液体迅速适应环境; 聚集在一起的趋势在50-H的操作期间增加。 总之,此处提出的结果表明,这种体外模型产生了反映了体内情况的环境,因此有可能在CAPD中研究腹膜炎。

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