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Soybean molasses-based bioindicator system for monitoring sterilization process: Designing and performance evaluation

机译:基于大豆糖蜜的生物指示剂系统,用于监测灭菌过程:设计和性能评估

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摘要

A novel cost-effective Bacillus atrophaeus Sterilization Bioindicator System (BIS) with a high quality and performance was developed from a soybean byproduct and compared with the commercial BIS. It was composed of recovery medium and dry-fermented spores with sand as the support. The BIS was developed and optimized using a sequential experimental design strategy. The recovery medium contained soluble starch (1.0 g/L), soybean molasses (30.0 g/L), tryptone (40.0 g/L), and bromothymol blue (0.02 g/L) at pH 8.5. The solid-state fermentation conditions of the bioreactor and environmental humidity had no significant effects on the spore yield and dry-heat resistance. The only substrate mineral that showed a positive effect was Mn2+, allowing Mg2+, K+, and Ca2+ to be eliminated from the formulation. Validation of optimized medium indicated D 160°C = 6.8±1.0 min (3.6 min more than the minimum) and spore yield = 2.3 ± 0.5 × 109 CFU/g dry sand (10,000 × initial values). BIS performance resulted in D 160°C = 6.6 ± 0.1 min. Sporulation and germination kinetics allowed the sporulation process to be reduced to three days, and the growth of heat-damaged spores was sufficient to achieve visual identification of a non-sterile BIS within 21 h. Process economics was a minimum of 23.9%, and process cycle time was reduced from 29 to 15 days. The new BIS parameters demonstrated compliance to all regulatory requirements. No studies have yet described a BIS production from soybean molasses.
机译:从大豆副产品开发了一种具有成本效益的新型优质萎缩芽孢杆菌灭菌生物指示剂系统(BIS),并将其与商业BIS进行了比较。它由回收培养基和以沙子为载体的干发酵孢子组成。 BIS是使用顺序实验设计策略开发和优化的。回收介质包含pH 8.5的可溶性淀粉(1.0 g / L),大豆糖蜜(30.0 g / L),胰蛋白((40.0 g / L)和溴百里酚蓝(0.02 g / L)。生物反应器的固态发酵条件和环境湿度对孢子产量和耐干热性没有显着影响。唯一显示出积极作用的底物矿物是Mn2 +,可以从配方中消除Mg2 +,K +和Ca2 +。优化培养基的验证表明D 160°C = 6.8±1.0 min(比最小值高3.6 min),孢子产率= 2.3±0.5×109 CFU / g干砂(10,000×初始值)。 BIS性能导致D 160°C = 6.6±0.1分钟。孢子形成和萌发动力学使孢子形成过程减少到三天,并且受热损伤的孢子的生长足以在21小时内目测鉴定非无菌BIS。流程经济效益最低为23.9%,流程周期时间从29天减少至15天。新的BIS参数证明符合所有法规要求。尚无研究描述大豆糖蜜生产BIS。

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