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Multifunctional Role of the Whey Culture Medium in the Spray Drying Microencapsulation of Lactic Acid Bacteria

机译:乳清培养基在乳酸菌喷雾干燥微胶囊化中的多功能作用

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This study aims to evaluate the multifunctional role of whey culture medium during the spray drying microencapsulation of Lactobacillus fermentum K73. Whey culture medium containing growing microorganisms served to hydrate different mixtures (gum arabic, maltodextrin and whey). We evaluated the use of these mixtures as carbon sources and their protective effects on simulated gastrointestinal conditions. The optimal mixture was spray-dried while varying the outlet temperature and atomizing pressure using a response surface design. These conditions served to evaluate microorganism survival, tolerance to gastrointestinal conditions in vitro, physicochemical properties, morphometric features and stability at 4, 25 and 37 °C. Lactobacillus fermentum K73 replicated in the carrier material. Bacterial change cycles were (–1.97±0.16) log CFU/g after the drying process and (–0.61±0.08) and (–0.23±0.00) log CFU/g after exposure of the capsules to simulated gastric pH and bile salt content, respectively. The physicochemical properties and morphometric features were within the normal ranges for a powder product. The powder was stable at a storage temperature of 4 °C. The spray drying of the whey culture medium with growing microorganisms using the optimized drying conditions was successful. This study demonstrates the use of whey culture medium as a component of carrier material or as the carrier material itself, as well as its protective effects during drying, under simulated gastrointestinal conditions, and at varied storage temperatures.
机译:这项研究旨在评估乳清培养基在发酵乳杆菌K73喷雾干燥微囊化过程中的多功能作用。含有生长中微生物的乳清培养基可水合不同的混合物(阿拉伯树胶,麦芽糊精和乳清)。我们评估了这些混合物作为碳源的使用及其对模拟胃肠道疾病的保护作用。使用响应表面设计,将最佳混合物喷雾干燥,同时改变出口温度和雾化压力。这些条件用于评估微生物的存活率,体外胃肠道条件的耐受性,理化特性,形态特征和在4、25和37°C下的稳定性。发酵乳杆菌K73在载体材料中复制。干燥过程后,细菌变化周期为(–1.97±0.16)log CFU / g,以及将胶囊暴露于模拟胃液pH和胆汁盐含量后的(–0.61±0.08)和(–0.23±0.00)log CFU / g,分别。粉末产品的理化性质和形态特征在正常范围内。该粉末在4℃的储存温度下是稳定的。使用优化的干燥条件,用生长的微生物对乳清培养基进行喷雾干燥是成功的。这项研究证明了使用乳清培养基作为载体材料的组分或载体材料本身,以及在干燥过程中,模拟胃肠道条件下和不同储存温度下的乳清保护作用。

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