EFFECT OF MAGNETIC FIELD AND ENVIRONMENTAL PH ON THE ADSORPTION EFFICIENCY OF CELLS OF THE GENUS LACTOBACILLUS

Svitlana Danylenko, Marharyta Chalenko, Lolita Marynchenko, Oksana Potemska, Liudmyla Reshetniak, Kateryna Kopylova
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Abstract

Subject. Adsorption of probiotic cultures Lactobacillus acidophilus, namely strains 27 and Narine, and Lactobacillus plantarum, on high-dispersed silica. Purpose. The purpose of this study was to investigate the influence of a magnetic field with intensities of 0.03 and 0.09 T and the pH of the medium on the efficiency of cell adsorption of Lactobacillus probiotic strains. Method. Microbiological and biotechnological methods were applied in this research. Hydrogels based on high-dispersed silica "Enterosgel" and "Toxin.NET" were used as adsorbents. Neodymium magnets with intensities of 0.03 T and 0.09 T were employed to create the magnetic field. The efficiency of adsorption was evaluated by the cell survival of probiotic cultures after adsorption on hydrogel preparations under the influence of the magnetic field and in the case of pH adjustment by adding acid or alkali. The functional properties of the obtained composite preparations were assessed by the time of clot formation after milk fermentation and its acidity. Results. The research results demonstrated that immobilized cells of Lactobacillus acidophilus on the hydrogel of methylsilicic acid had enhanced protection not only against harsh conditions of the gastrointestinal tract (low pH and bile influence) but also against magnetic fields with intensities of 0.03 T and 0.09 T, which had an overall negative impact on native (non-immobilized) cells. The functional activity of cells immobilized in this way on the hydrogel based on high-dispersed silica "Enterosgel," evaluated by acidity and clot formation time, was only slightly reduced: up to 4,3-11,3%. This confirms the assumption that the assessment of cell survival by the Koch's cup method does not fully correspond to the real state of the cells. It was also determined that conducting adsorption in the pH range below 4 is impractical, and the optimal conditions for L. plantarum adsorption were in the pH range of 6 to 7. Scope of results. The research findings can be utilized for the development of complex probiotic preparations based on high-dispersed silica, which may be appropriate for preserving the functionality of probiotic cells used for starter cultures or in the production of dietary supplements containing beneficial microorganisms.
磁场和环境ph对乳酸菌属细胞吸附效率的影响
主题。益生菌培养物嗜酸乳杆菌(即菌株27和Narine)和植物乳杆菌在高分散二氧化硅上的吸附。目的。本研究的目的是研究0.03和0.09 T磁场强度和培养基pH对益生乳杆菌细胞吸附效率的影响。方法。本研究采用微生物学和生物技术方法。基于高分散二氧化硅的水凝胶“肠凝胶”和“毒素”。NET”作为吸附剂。磁场采用强度分别为0.03 T和0.09 T的钕磁铁。通过观察益生菌培养物在磁场作用下吸附在水凝胶制剂上的细胞存活率,以及通过添加酸或碱调节pH值的情况来评价吸附效率。通过牛奶发酵后凝块形成的时间和酸度来评价复合制剂的功能特性。结果。研究结果表明,甲基硅酸水凝胶固定的嗜酸乳杆菌细胞不仅对胃肠道恶劣条件(低pH值和胆汁影响)有增强的保护作用,而且对0.03 T和0.09 T强度的磁场也有增强的保护作用,而磁场强度对天然(未固定的)细胞总体上是负面的。以这种方式固定在基于高分散二氧化硅“Enterosgel”的水凝胶上的细胞的功能活性,通过酸度和凝块形成时间来评估,仅略微降低:高达4,3-11,3%。这证实了用科赫杯法评估细胞存活率并不完全符合细胞真实状态的假设。同时确定在pH值低于4的范围内进行吸附是不现实的,在pH值6 ~ 7的范围内是植物乳杆菌吸附的最佳条件。结果范围。该研究结果可用于开发基于高分散二氧化硅的复杂益生菌制剂,该制剂可能适用于保存用于发酵剂培养或用于生产含有有益微生物的膳食补充剂的益生菌细胞的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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