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Studies on survivability storage stability of encapsulated spray dried probiotic powder

机译:存活性封装喷雾干燥益生菌粉末的存贮稳定性研究

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摘要

Awareness about probiotic food and their health benefits is increasing tremendously. However, probiotics have to withstand the harsh conditions that come across during their processing, handling, storage, and gastrointestinal conditions. Encapsulating technologies can be used to protect the probiotics during their passage through the gastrointestinal system of the human gut. Probiotics as an ingredient in dry powder form can be easily handled, stored, and used in developing the probiotic functional products. In the present study, probiotic cells (Lactobacillus acidophilus) were encapsulated by spray drying technology to produce a probiotic powder using 20% of maltodextrin and varied concentrations of gum arabic. The effect of processing conditions such as inlet air temperature (130–150 °C) and gum arabic concentration (0–10%) on the encapsulation efficiency and physical properties were studied. Further, the free and encapsulated probiotic cells were exposed to the simulated-gastric intestinal (SGI) fluid conditions and different storage conditions for their viability. For all the tested formula, moisture content, water activity, encapsulation efficiency, hygroscopicity, and wettability obtained were in the range of 4.59–9.05% (w.b.), 0.33–0.52, 65–89.15%, 12–21.15 g H2O/100g dry weight, and 116 s–353 s, respectively. The Fourier transform infrared (FTIR) results have shown that gum arabic and maltodextrin have structural stability during spray drying. The encapsulated probiotic cells have shown a positive effect and exhibited better viability after exposure to a SGI solution at different pH levels and duration compared to free cells. The viability of encapsulated cells stored at refrigerated condition (4 °C) was found to be higher than the viability of cells stored at room temperature (25 °C).
机译:对益生菌食品的认识及其健康益处是巨大的巨大增加。然而,益生菌必须承受其处理,处理,储存和胃肠环境中遇到的恶劣条件。封装技术可用于在通过人体肠道的胃肠系统通过过程中保护益生菌。益生菌作为干粉形式的成分可以很容易地处理,储存和用于开发益生菌功能产品。在本研究中,通过喷雾干燥技术包封益生菌细胞(乳杆菌酸碱),其使用20%的麦芽糖糊精和多种阿拉伯胶浓度产生益生菌粉末。研究了加工条件,例如入口空气温度(130-150℃)和胶阿拉伯浓度(0-10%)的效果是对包封效率和物理性质进行的。此外,将自由和包封的益生菌细胞暴露于模拟胃肠(SGI)流体条件和不同的储存条件以进行活力。对于所有测试的公式,水分含量,水性活性,包封效率,吸湿性和润湿性在4.59-9.05%(WB)的范围内,0.33-0.52,65-89.15%,12-21.15g H2O / 100g干燥重量和116 s-353s。傅里叶变换红外(FTIR)结果表明,阿拉伯语和麦芽糖糊精在喷雾干燥过程中具有结构稳定性。包封的益生菌细胞已经显示出积极效果,并且在与游离细胞相比,在不同pH水平和持续时间下暴露于SGI溶液后表现出更好的活力。发现储存在冷藏条件(4℃)的封装细胞的活力高于在室温(25℃)时储存的细胞的存活率。

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