Faculdade de Ciências Farmacêuticas de Ribeirão Preto, Universidade de São Paulo.
Faculdade de Farmácia, Universidade Federal De Goiás.
J Vis Exp. 2023 Apr 7(194). doi: 10.3791/65192.
Probiotics and prebiotics are of great interest to the food and pharmaceutical industries due to their health benefits. Probiotics are live bacteria that can confer beneficial effects on human and animal wellbeing, while prebiotics are types of nutrients that feed the beneficial gut bacteria. Powder probiotics have gained popularity due to the ease and practicality of their ingestion and incorporation into the diet as a food supplement. However, the drying process interferes with cell viability since high temperatures inactivate probiotic bacteria. In this context, this study aimed to present all the steps involved in the production and physicochemical characterization of a spray-dried probiotic and evaluate the influence of the protectants (simulated skim milk and inulin:maltodextrin association) and drying temperatures in increasing the powder yield and cell viability. The results showed that the simulated skim milk promoted higher probiotic viability at 80 °C. With this protectant, the probiotic viability, moisture content, and water activity (Aw) reduce as long as the inlet temperature increases. The probiotics' viability decreases conversely with the drying temperature. At temperatures close to 120 °C, the dried probiotic showed viability around 90%, a moisture content of 4.6% w/w, and an Aw of 0.26; values adequate to guarantee product stability. In this context, spray-drying temperatures above 120 °C are required to ensure the microbial cells' viability and shelf-life in the powdered preparation and survival during food processing and storage.
由于益生菌和益生元对人类和动物健康有益,它们受到食品和制药行业的极大关注。益生菌是可以对人类和动物健康产生有益影响的活菌,而益生元是一种可以滋养有益肠道细菌的营养物质。由于粉末益生菌易于摄入和纳入饮食作为食品补充剂,因此其使用变得越来越受欢迎。然而,干燥过程会干扰细胞活力,因为高温会使益生菌失活。在这种情况下,本研究旨在介绍喷雾干燥益生菌生产和物理化学特性表征的所有步骤,并评估保护剂(模拟脱脂乳和菊粉:麦芽糊精混合物)和干燥温度对提高粉末产率和细胞活力的影响。结果表明,模拟脱脂乳在 80°C 下可提高益生菌的存活率。使用这种保护剂,随着入口温度的升高,益生菌的存活率、水分含量和水分活度(Aw)会降低。益生菌的存活率会随着干燥温度的升高而降低。在接近 120°C 的温度下,干燥的益生菌的存活率约为 90%,水分含量为 4.6%w/w,Aw 为 0.26;这些值足以保证产品的稳定性。在这种情况下,需要高于 120°C 的喷雾干燥温度才能确保粉末制剂中微生物细胞的活力和保质期以及在食品加工和储存过程中的生存能力。