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Optimization and Culture Conditions to Improve Helicobacter Pylori Growth in HAM's F-12 Medium by Response Surface Methodology

机译:优化和培养条件,以提高响应面法在HAM的F-12培养基中幽门螺杆菌的生长

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Helicobacter pylori is a gastroduodenal pathogen that colonizes the human stomach and is the causal agent of gastric diseases. From the clinical and epidemiological point of view, enhancing and improving the growth of this bacterium in liquid media is an important goal to achieve in order to allow the performance of accurate physiological studies. The aim of this work was to optimize three culture conditions that influence the growth of H. pylori in the defined medium Ham's F-12 supplemented with 5% fetal bovine serum by using response surface methodology as a statistical technique to obtain the optimal conditions. The factors studied in this experimental design (Box-Behnken design) were the pH of the medium, the shaking speed (rpm) and the percentage of atmospheric oxygen, in a total of 17 experiments. The biomass specific growth rate (μ) was the response measured. The model was validated for pH and shaking speed. The percentage of atmospheric oxygen did not influence the growth for the range of values studied. At the optimal values found for pH and shaking speed, 8 and 130 rpm, respectively, a specific growth rate value of 0.164 h?1, corresponding to a maximal concentration of approximately 1.5xl08 CFU/ml, was reached after 8 h. The experimental design strategy allowed, for the first time, the optimization of H. pylori growth in a semi-synthetic medium, which may be important to improve physiological and metabolic studies of this “fastidious” bacterium.
机译:幽门螺杆菌是胃十二指肠病原体,定植在人的胃部,是胃病的病因。从临床和流行病学的观点来看,增强和改善该细菌在液体培养基中的生长是要实现精确生理研究的目的而要实现的重要目标。这项工作的目的是通过使用响应面方法作为一种统计技术来获得最佳条件,从而优化三种在确定培养基中添加幽门螺杆菌的生长条件,该培养基中添加了5%胎牛血清的Ham's F-12。在总共17个实验中,此实验设计(Box-Behnken设计)中研究的因素是培养基的pH值,振荡速度(rpm)和大气中的氧气百分比。生物量比生长速率(μ)是所测量的响应。验证该模型的pH和摇动速度。在所研究的数值范围内,大气氧气的百分比不影响生长。在pH和摇动速度分别为8和130rpm的最佳值下,在8小时后达到了0.164h -1的比生长速率值,对应的最大浓度约为1.5×10 8 CFU / ml。实验设计策略首次使幽门螺杆菌在半合成培养基中的生长最优化,这对于改善这种“挑剔”细菌的生理和代谢研究可能很重要。

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