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Optimization of Production Parameters for Probiotic Lactobacillus Strains as Feed Additive

机译:益生菌乳酸菌饲料添加剂生产参数的优化。

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摘要

In animal nutrition, probiotics are considered as desirable alternatives to antibiotic growth promoters. The beneficial effects of probiotics primarily depend on their viability in feed, which demands technical optimization of biomass production, since processing and storage capacities are often strain-specific. In this study, we optimized the production parameters for two broiler-derived probiotic lactobacilli (L. salivarius and L. agilis). Carbohydrate utilization of both strains was determined and preferred substrates that boosted biomass production in lab-scale fermentations were selected. The strains showed good aerobic tolerance, which resulted in easier scale-up production. For the freeze-drying process, the response surface methodology was applied to optimize the composition of cryoprotective media. A quadratic polynomial model was built to study three protective factors (skim milk, sucrose, and trehalose) and to predict the optimal working conditions for maximum viability. The optimal combination of protectants was 0.14g/mL skim milk/ 0.08 g/mL sucrose/ 0.09 g/mL trehalose (L. salivarius) and 0.15g/mL skim milk/ 0.08 g/mL sucrose/ 0.07 g/mL (L. agilis), respectively. Furthermore, the in-feed stabilities of the probiotic strains were evaluated under different conditions. Our results indicate that the chosen protectants exerted an extensive protection on strains during the storage. Although only storage of the strains at 4 °C retained the maximum stability of both Lactobacillus strains, the employed protectant matrix showed promising results at room temperature.
机译:在动物营养中,益生菌被认为是抗生素生长促进剂的理想替代品。益生菌的有益作用主要取决于它们在饲料中的生存能力,这需要对生物质生产进行技术优化,因为加工和存储能力通常是特定菌株的。在这项研究中,我们优化了两种肉鸡来源的益生菌乳杆菌(唾液乳杆菌和灵芝乳杆菌)的生产参数。确定了两个菌株的碳水化合物利用,并选择了可在实验室规模的发酵中提高生物质产量的优选底物。该菌株显示出良好的需氧耐受性,从而更易于按比例生产。对于冷冻干燥过程,使用响应表面方法来优化冷冻保护介质的组成。建立了一个二次多项式模型来研究三个保护因子(脱脂牛奶,蔗糖和海藻糖),并预测最大生存能力的最佳工作条件。保护剂的最佳组合是0.14g / mL脱脂乳/0.08g/mL蔗糖/0.09g/mL海藻糖(唾液乳杆菌)和0.15g / mL脱脂乳/0.08g/mL蔗糖/0.07g/mL(L。敏捷)。此外,在不同条件下评估了益生菌菌株的进料稳定性。我们的结果表明,所选的保护剂在贮藏期间对菌株具有广泛的保护作用。尽管仅在4℃下储存菌株保持了两种乳酸杆菌菌株的最大稳定性,但是所采用的保护基质在室温下显示出有希望的结果。

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