首页> 外国专利> METHOD FOR PRODUCING LAVA SEAWATER-DERIVED NATURAL MINERAL-COATED PROBIOTICS AND LAVA SEAWATER-DERIVED NATURAL MINERAL-COATED PROBIOTICS USING SAME

METHOD FOR PRODUCING LAVA SEAWATER-DERIVED NATURAL MINERAL-COATED PROBIOTICS AND LAVA SEAWATER-DERIVED NATURAL MINERAL-COATED PROBIOTICS USING SAME

机译:用相同的方法生产熔岩海产天然矿物涂层的生物体和熔岩海产天然矿物涂层的生物体

摘要

The present invention relates to a method for producing lava seawater-derived natural mineral-coated probiotics and lava seawater-derived natural mineral-coated probiotics using same. More specifically, the present invention uses a method for adding lava seawater to a medium for culturing lactobacilli so that the concentration of the lava seawater becomes 30-70% (v/v), thus causing minerals included in the lava seawater and proteins on the lactobacilli medium to precipitate in a mineral-protein salt state, thus inducing smooth culture of lactobacilli through the control of salinity on the medium, and while lactobacilli are cultured, chaperones, which are stress-responsive proteins, are produced in microbial bodies on a medium in which the concentration of salt is adjusted, due to salt-induced stress, and a culture broth after culture is concentrated so that the outer sides of the microbial bodies are uniformly coated with a mineral-protein salt generated when the medium is sterilized, and thus overall thermal stability of the inner and outer sides of the microbial bodies are remarkably enhanced. Through this, it is possible to obtain efficacy in remarkably enhancing the viability and storage stability over time when lactobacilli are lyophilized or spray-dried, efficacy in enduring continuous pH changes of gastric acid and bile acid in the digestive tract inside a body, and the like.
机译:熔岩海水来源的天然矿物被覆益生菌的生产方法以及熔岩海水来源的天然矿物被覆益生菌的生产方法技术领域更具体地,本发明使用了一种将熔岩海水添加到用于培养乳酸杆菌的培养基中的方法,使得熔岩海水的浓度变为30-70%(v / v),从而导致熔岩海水中包含的矿物质和蛋白质在蛋白质上的产生。乳酸杆菌培养基以矿物质蛋白质盐的形式沉淀,从而通过控制培养基上的盐度诱导乳酸杆菌的平滑培养,并且在培养乳酸杆菌的同时,在培养基上的微生物体中产生了作为应激反应蛋白的伴侣蛋白。其中,由于盐诱导的应力而调节盐的浓度,并且浓缩培养后的培养液,以使微生物体的外侧均匀地被灭菌时产生的矿物质蛋白盐覆盖,以及因此,显着提高了微生物体内侧和外侧的总体热稳定性。通过这种方式,可以获得在将乳酸杆菌冻干或喷雾干燥时随时间推移显着提高生存力和贮存稳定性的功效,持久地抵抗体内消化道中胃酸和胆汁酸的pH值变化的功效以及喜欢。

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