Centre of Materials and Minerals, School of Engineering and Information Technology, Universiti Malaysia Sabah, 88999 Kota Kinabalu, Sabah, Malaysia.
Appl Microbiol Biotechnol. 2010 Mar;86(1):385-91. doi: 10.1007/s00253-009-2384-y. Epub 2009 Dec 22.
The aim of this work was to develop a standard quantitative method to measure the acid tolerance of probiotic cells when exposed to a simulated gastric fluid. Three model strains of different cell concentrations were exposed to a standard simulated gastric fluid of fixed volume. The fluid pH ranged from pH 1.5 to 2.5. In general, the death kinetics followed an exponential trend. The overall death constant, k (d), for all strains was found to be in a power relationship with the pH value and the initial cell concentration, and it can be expressed as k(d)=k(AII) (pH(-9.0)N(0)(-0.19)) where k (AII) is defined as the acid intolerance indicator and N (0) is the initial cell concentration (CFU/ml). This equation was validated with the experimental data with an average R (2) of 0.98. The acid intolerance of cells can be quantitatively expressed by the k (AII) values, where higher value indicates higher intolerance. In conclusion, a standard quantitative method has been developed to measure the acid tolerance of probiotic cells. This could facilitate the selection of probiotic strains and processing technologies.
本工作旨在开发一种标准的定量方法,以测量益生菌细胞在暴露于模拟胃液时的耐酸性。三种不同细胞浓度的模型菌株被暴露于固定体积的标准模拟胃液中。该溶液的 pH 值范围为 1.5 至 2.5。通常,死亡动力学遵循指数趋势。所有菌株的总体死亡常数 k (d) 与 pH 值和初始细胞浓度呈幂函数关系,可以表示为 k(d)=k(AII) (pH(-9.0)N(0)(-0.19)),其中 k (AII) 被定义为耐酸性指示剂,N (0) 是初始细胞浓度 (CFU/ml)。该方程通过实验数据进行了验证,平均 R (2) 为 0.98。细胞的耐酸性可以通过 k (AII) 值来定量表示,其中较高的值表示较高的耐酸性。总之,已经开发出一种标准的定量方法来测量益生菌细胞的耐酸性。这可以促进益生菌菌株和加工技术的选择。